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○ | ○ | Article | Sub-minute carbonization of polymer/carbon nanotube films by microwave induction heating for ultrafast preparation of hard carbon anodes for sodium-ion batteries | Hard carbons (HCs) are excellent anode materials for sodium-ion batteries (SIBs). However, the carbonization and granulation of HC powders involve complex processes and require considerable energy. Here, we developed a facile method for manufacturing HC anodes for SIBs via a novel microwave induction heating (MIH) process for polymer/single-walled carbon nanotube (SWCNT) films. Numerical simulations solving electromagnetic field and heat transfer problems revealed the MIH mechanism; the electric current induced by the applied microwave enables direct Joule heating of the SWCNT networks in the composite film. Consequently, the composite films could be heated to the target temperatures (800-1400 degrees C) and free-standing HC/SWCNT anodes could be prepared by applying MIH for only 30 s. Comparative analyses confirmed that ultrafast MIH is a reliable technique for producing HC anodes and can replace conventional carbonization processes which require a hightemperature furnace. Moreover, the HC/SWCNT anodes prepared by the ultrafast MIH were successfully applied to the SIB full cells. Finally, the feasibility of MIH for scalable roll-to-roll production of HC anodes was verified through local heating tests using a circular sheet larger than a resonator. | Ryoo, Gyeongbeom; Shin, Jiwon; Kim, Byeong Guk; Lee, Do Geun; Han, Joong Tark; Park, Byeongho; Oh, Youngseok; Jeong, Seung Yol; Lee, Se-Hee; Lee, Dong Yun; Kim, Daeho; Park, Jong Hwan | Korea Electrotechnol Res Inst KERI, Nano Hybrid Technol Res Ctr, Elect Mat Res Div, Chang Won 51543, South Korea; Kyungpook Natl Univ, Dept Polymer Sci & Engn, Daegu 41566, South Korea; Kyungpook Natl Univ, Sch Elect & Elect Engn, Daegu 41566, South Korea; Univ Sci & Technol UST, KERI Sch, Elect Energy & Mat Engn, Chang Won 51543, South Korea; Korea Inst Mat Sci KIMS, Composites Res Div, Chang Won 51508, South Korea | Park, Jong Hwan/LYO-8040-2024 | 57449611400; 59091591700; 59229534700; 58069742800; 8600333500; 59870205600; 55434026400; 55193471100; 59629554800; 57211001605; 55538276000; 56226982900 | dongyunlee@knu.ac.kr;kdh@keri.re.kr;jhpark79@keri.re.kr; | CHEMICAL ENGINEERING JOURNAL | CHEM ENG J | 1385-8947 | 1873-3212 | 496 | SCIE | ENGINEERING, CHEMICAL;ENGINEERING, ENVIRONMENTAL | 2024 | 13.2 | 3.0 | 1.65 | 2025-05-07 | 8 | 9 | Sodium-ion batteries; Hard carbon anodes; Ultrafast microwave induction heating; Carboxymethyl cellulose; Single-walled carbon nanotubes | PORE STRUCTURE; HIGH-CAPACITY; PERFORMANCE; CELLULOSE; STORAGE; ENERGY; TEMPERATURE; FRAMEWORKS; GRAPHENE | Carboxymethyl cellulose; Hard carbon anodes; Single-walled carbon nanotubes; Sodium-ion batteries; Ultrafast microwave induction heating | Anodes; Carbon films; Carbonization; Electromagnetic fields; Film preparation; Induction heating; Nanocomposite films; Polymer films; Single-walled carbon nanotubes (SWCN); Sodium-ion batteries; Carbon anodes; Carbonisation; Carboxymethyl cellulose; Hard carbon; Hard carbon anode; Single-walled carbon; Single-walled carbon nanotube; Sodium ion batteries; Ultra-fast; Ultrafast microwave induction heating; Metal ions | English | 2024 | 2024-09-15 | 10.1016/j.cej.2024.154081 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
○ | ○ | Review | Surface nanodroplets as platforms for small scale chemical engineering | Intensification of chemical process by compartmentalization has been a topic of interest as it may make the process faster and more energy efficient. Performing chemical reactions in confinement offers advantages from faster kinetics, mild reaction conditions, higher reaction efficiency, low consumption of reagents, and higher selectivity of products. Microdroplets immersed in immiscible fluids may serve as confining environment in which chemical reactions take place. Particular attention has been paid to femtoliter droplets formed on a surface - termed as surface nanodroplets - which can be harnessed as stable confinement for chemical reaction. Recently, surface nanodroplets have been intensively studied from basic formation mechanism to their applications in chemical sensing, liquid-liquid extraction, and optical focusing. As small-scale chemical reactors, the liquid composition in surface nanodroplets can be tuned to enable investigation of biphasic reaction kinetics, synthesis of new materials, and enhanced photocatalysis. In this review, the author intends to highlight some of the latest achievements on surface nanodroplets as reactors in confinement and point out the potential of integrating robotic and machine learning technology in small scale chemical engineering. | You, Jae Bem | Kyungpook Natl Univ, Dept Chem Engn, Daegu 41566, South Korea | You, Jae/C-6211-2019 | 55619455300 | jb.you@knu.ac.kr; | CHEMICAL ENGINEERING JOURNAL | CHEM ENG J | 1385-8947 | 1873-3212 | 483 | SCIE | ENGINEERING, CHEMICAL;ENGINEERING, ENVIRONMENTAL | 2024 | 13.2 | 3.0 | 0.47 | 2025-05-07 | 6 | 6 | DEEP EUTECTIC SOLVENTS; BIPHASIC REACTIONS; FLUID TRANSPORT; WETTABILITY; NANOEMULSIONS; PUMPLESS; GRAPHENE; DESS | English | 2024 | 2024-03-01 | 10.1016/j.cej.2024.149252 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||||
○ | ○ | Article | Two-fold advancement in LDPE Pyrolysis: Enhancing light oil output and substituting sand with kaolin in a fluidized bed system | Low-density polyethylene (LDPE) is the second most prevalent waste plastic globally, followed by polypropylene. The pyrolytic conditions required to obtain light oil(<= C12) from LDPE are more stringent than those for polypropylene, water plastics, acrylonitrile, butadiene, styrene, and other materials. Consequently, numerous researchers have underscored the necessity of employing catalysts in LDPE pyrolysis. This study explored the pyrolysis characteristics of LDPE at various temperatures in a non-catalytic fluidized bed reactor. The experiments employed a mixture of sand + kaolin, one of the Si-Al catalysts, to investigate the pyrolysis of LDPE in a fluidized bed reactor at different temperatures. The findings demonstrated that using sand + kaolin as a fluidized bed material significantly enhances the yield of pyrolysis oil while concurrently reducing the gas yield compared to using sand alone. Moreover, a higher light oil fraction was obtained using kaolin (16.67 wt%) at 560 degrees C compared with 8.6 wt%. In addition, the study revealed that elevated temperatures (520 degrees C, 560 degrees C, and 600 degrees C) led to a reduction in olefins and paraffin, coupled with an increase in the formation of naphthenes, aromatics, and ketones in the pyrolysis oil. Overall, the findings underscore the promising potential of kaolin as an alternative to sand, facilitating the enhanced production of valuable light oil fractions. The insights garnered from this study are invaluable for devising effective waste management strategies. | Choi, Yujin; Yoon, Young Min; Jang, Jae Jun; Kim, Daewook; Ryu, Ho-Jung; Lee, Doyeon; Won, Yooseob; Nam, Hyungseok; Hwang, Byungwook | Korea Inst Energy Res, CCS Res Dept, Climate Change Div, Daejeon 34129, South Korea; Hanbat Natl Univ, Dept Civil & Environm Engn, Daejeon 34158, South Korea; Kyungpook Natl Univ, Dept Mech Engn, Daegu 41950, South Korea | Nam, Hyungseok/J-7458-2015; Yoon, Youngmin/MSZ-2536-2025; Ryu, Ho-Jung/AAV-3451-2020 | 57734617200; 59032948700; 59033631000; 55569361600; 7202277238; 55881252900; 57212454920; 57190418228; 44461423600 | namhs219@knu.ac.kr;hbw@kier.re.kr; | CHEMICAL ENGINEERING JOURNAL | CHEM ENG J | 1385-8947 | 1873-3212 | 490 | SCIE | ENGINEERING, CHEMICAL;ENGINEERING, ENVIRONMENTAL | 2024 | 13.2 | 3.0 | 1.1 | 2025-05-07 | 6 | 6 | Plastic waste; Low -density polyethylene; Pyrolysis oil; Fluidized bed; Separation; Kaolin catalyst | PLASTIC WASTE; POLYETHYLENE; INCINERATION; FRACTION | Fluidized bed; Kaolin catalyst; Low-density polyethylene; Plastic waste; Pyrolysis oil; Separation | Catalysts; Chemical reactors; Fluid catalytic cracking; Fluidized bed furnaces; High density polyethylenes; Kaolin; Ketones; Polypropylenes; Sand; Styrene; Supersaturation; Fluidized bed reactors; Fluidized bed system; Kaolin catalyst; Light oil; Oil fractions; Oil output; Plastics waste; Pyrolysis oil; Waste plastic; ]+ catalyst; Fluidized beds | English | 2024 | 2024-06-15 | 10.1016/j.cej.2024.151503 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
○ | ○ | Article | Ultrahigh-performance indoor perovskite quantum dot photovoltaics via ligand-passivation engineering | The advancement of perovskite photovoltaic (PePV) systems for harnessing indoor light energy has been accelerated by the advent of the Internet of Things (IoT). However, the commercialization of these systems is impeded by moisture instability and restricted carrier lifetimes. Perovskite quantum dots (PQDs) offer viable solutions for increasing stability despite the potential effects of their organic ligands on efficiency. In this study, a ligand passivation strategy was employed in PQD photovoltaics (PQDPVs) to enhance the carrier lifetime. The inclusion of 2-phenyl-4-(1,2,2-triphenylvinyl) quinazoline (2PACz) in the PQD film effectively reduced surface defects and suppressed trap -assisted charge recombination, resulting in a prolonged carrier lifetime. The charge carrier lifetimes in passivated PQDPVs increased by 35 %. Additionally, the matching of the energy level of the PQD changed after 2PACz passivation engineering with that of the 2PACz showed an advantage for hole transport. PQDPVs fabricated using 2PACz-passivated PQDs showed an impressive output power density (P out ) of 123.3 mu W/cm 2 (power conversion efficiency of 41.1 %) under a fluorescent lamp (0.30 mW/cm 2 ; 1000 lx) owing to improved open -circuit voltage and fill factor. Moreover, the device maintained more than 80 % of its initial efficiency for 500 h in an ambient atmosphere. These findings highlight the potential of PQDPVs to compete with conventional PePVs for application in self -powered optoelectronic devices under dim illumination. | Kim, Seon Joong; Saeed, Muhammad Ahsan; Kim, Tae Hyuk; Ham, Gayoung; Song, Hochan; Ahn, Hyungju; Choi, Hyosung; Jo, Jea Woong; Kim, Yunsang; Cha, Hyojung; Shim, Jae Won | Korea Univ, Sch Elect Engn, Seoul 02841, South Korea; Kyungpook Natl Univ, Dept Energy Convergence & Climate Change, Daegu 41566, South Korea; Hanyang Univ, Res Inst Convergence Basic Sci, Dept Chem, Res Inst Nat Sci, Seoul 04763, South Korea; Pohang Accelerator Lab, Pohang 37673, South Korea; Dongguk Univ, Res Ctr Photoenergy Harvesting & Convers Technol p, Dept Energy & Mat Engn, Seoul 04620, South Korea; Mississippi State Univ, Dept Sustainable Bioprod, 201 Locksley Way, Starkville, MS 39759 USA; Kyungpook Natl Univ, Dept Hydrogen & Renewable Energy, Daegu 41566, South Korea | Kim, Tae/B-9921-2013; SAEED, MUHAMMAD AHSAN/AAI-4113-2020 | 58404594700; 57188812566; 57560437400; 58506766600; 57219430355; 56452216500; 36624951400; 36559749700; 57202749491; 35885242200; 7201856264 | hcha@knu.ac.kr;jwshim19@korea.ac.kr; | CHEMICAL ENGINEERING JOURNAL | CHEM ENG J | 1385-8947 | 1873-3212 | 488 | SCIE | ENGINEERING, CHEMICAL;ENGINEERING, ENVIRONMENTAL | 2024 | 13.2 | 3.0 | 1.38 | 2025-05-07 | 7 | 7 | Perovskite quantum dot; Ligand passivation; Long carrier lifetime; High open -circuit voltage; Indoor photovoltaics | SOLAR-CELLS; ALPHA-CSPBI3 PEROVSKITE; EFFICIENCY; STABILITY; ENERGY; INTERLAYERS | High open-circuit voltage; Indoor photovoltaics; Ligand passivation; Long carrier lifetime; Perovskite quantum dot | Conversion efficiency; Ligands; Nanocrystals; Open circuit voltage; Optoelectronic devices; Passivation; Perovskite; Semiconductor quantum dots; Surface defects; Timing circuits; High open-circuit voltage; Indoor light; Indoor photovoltaic; Ligand passivation; Long carrier lifetime; Open-circuit voltages; Perovskite quantum dot; Photovoltaic systems; Photovoltaics; Ultra high performance; Carrier lifetime | English | 2024 | 2024-05-15 | 10.1016/j.cej.2024.151154 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
○ | Review | Untapped potential and prospects for non-lithium closed static “electrode-free” electrochemical energy storage architectures | Electrochemical energy storage technologies are pivotal in modern living and play a key role in global decarbonization and sustainability. Some applications, such as land and aerial electric vehicles, demand high gravimetric and volumetric energy densities. Simply altering the chemistry may not meet the requirement of these applications. Electrode-free architectures are viewed as a potential solution to meet the techno-economic requirements of these applications. While lithium (Li)-based batteries have predominantly been demonstrated in academic research using electrode-free architectures, concerns over Li supply could pose challenges to the global energy transition. Academia, industry, and governments explore non-Li-based batteries to diversify away from a dependence on Li in the global economy and energy systems. This review showcases notable demonstrations of non-Li-based electrode-free batteries, encompassing not only sodium (Na) but also other redox couples such as potassium (K), magnesium (Mg), zinc (Zn), aluminum (Al), and manganese dioxide (MnO2), while providing quantitative assessments of the enhancements in capacity and energy density. Additionally, this review offers insights and prospective paths for non-Li electrode-free battery architectures. © 2024 | Esparcia, Eugene; Joo, Jin; Lee, Jinwoo | Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, South Korea; Department of Applied Chemistry, College of Engineering, Kyungpook National University (KNU), 80 Daehak-ro, Buk-gu, Daegu, 41566, South Korea; Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, South Korea | 57202046742; 57189617034; 56007027600 | joojin@knu.ac.kr; | Chemical Engineering Journal | CHEM ENG J | 1385-8947 | 1873-3212 | 485 | SCIE | ENGINEERING, CHEMICAL;ENGINEERING, ENVIRONMENTAL | 2024 | 13.2 | 3.0 | 0.35 | 2025-05-07 | 3 | anode-free; batteries; cathode-free; electrode-free; non-lithium; post-lithium | Antennas; Architecture; Electrochemical electrodes; Energy storage; Lithium batteries; Manganese oxide; Supercapacitor; Anode-free; Battery; Cathode-free; Electrochemical energy storage; Electrode-free; Energy storage technologies; Global energy; Non-lithium; Post-lithium; Storage architectures; Lithium | English | Final | 2024 | 10.1016/j.cej.2024.149919 | 바로가기 | 바로가기 | 바로가기 | ||||||||
○ | ○ | Article | Using CO2 in cultivation of microalgal biomass and thermo-chemical process | Microalgal biomass is a promising candidate for next generation biorefinery resources because of its rapid growth rate and efficiency in carbon assimilation. Recent studies have reported successful microalgal cultivation using exhaust gases rich in CO2 as the carbon source. This study focuses on optimising carbon utilisation by incorporating CO2 into the pyrolysis process of microalgae, particularly Scenedesmus sp., cultivated under elevated CO2 concentrations. Under the influence of CO2, homogeneous reactions occurred between the volatile pyrolysates and CO2. These reactions result in enhanced CO levels and a reduction in polycyclic aromatic hydrocarbons (PAHs) in pyrolytic oil through the simultaneous reduction of CO2 and oxidation of volatile pyrolysates. To accelerate the kinetics of these homogeneous reactions, catalytic pyrolysis was performed using Ni-based catalysts. The catalytic effects of The Ni catalyst significantly boosted CO production by promoting homogeneous reactions. The evolution of CO from catalytic pyrolysis under CO2 conditions was 2.92 times higher than that from double-stage pyrolysis. Thus, these experimental findings underscore the technical advantages of strategically utilising CO2 in both microalgal biomass cultivation and the thermochemical conversion of microalgal biomass. | Park, Jonghyun; Cho, Seong-Heon; Jung, Sungyup; Lee, Jeong Seop; Tsang, Yiu Fai; Sim, Sang Jun; Kwon, Eilhann E. | Hanyang Univ, Dept Earth Resources & Environm Engn, Seoul 04763, South Korea; Kyungpook Natl Univ, Dept Environm Engn, Daegu 41566, South Korea; Korea Univ, Dept Chem & Biol Engn, Seoul 02841, South Korea; Educ Univ Hong Kong, Dept Sci & Environm Studies, Tai Po, Hong Kong 999077, Peoples R China; Educ Univ Hong Kong, State Key Lab Marine Pollut, Tai Po, Hong Kong 999077, Peoples R China | Tsang, Yiu/AAJ-2524-2020; Kwon, Eilhann/AGY-3339-2022; Jung, Sungyup/ABE-1493-2021; Sim, Sang/F-6697-2013; Sim, Sang Jun/F-6697-2013 | 58544742000; 56583023200; 55073290800; 57201215619; 22954605700; 55665584200; 9240622100 | simsj@korea.ac.kr;ek2148@hanyang.ac.kr; | CHEMICAL ENGINEERING JOURNAL | CHEM ENG J | 1385-8947 | 1873-3212 | 484 | SCIE | ENGINEERING, CHEMICAL;ENGINEERING, ENVIRONMENTAL | 2024 | 13.2 | 3.0 | 0.83 | 2025-05-07 | 3 | 3 | Microalgae; CO 2 utilization; Carbon neutrality; Pyrolysis; Biorefinery; Syngas | BOUDOUARD REACTION; PYROLYSIS; GAS; GASIFICATION; COMBUSTION; CONVERSION; HYDROGEN; METHANE; STEAM; WATER | Biorefinery; Carbon neutrality; CO<sub>2</sub> utilization; Microalgae; Pyrolysis; Syngas | English | 2024 | 2024-03-15 | 10.1016/j.cej.2024.149700 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
○ | ○ | Article | Valorization of cattle manure via a thermo-chemical process | World population growth and improvements in income levels have led to an increase in the global consumption of animal-sourced proteins. However, the massive production of animal manure has resulted in significant environmental burdens, such as increasing greenhouse gas emissions, eutrophication, and water and soil contamination. As such, this study proposed a sustainable and rapid disposal platform for animal manure as a precautionary approach to attenuate the environmental burdens caused by manure. A pyrolysis process was used to convert cattle manure into value-added products with the aim of achieving both rapid volume reduction and sustainable conversion. CO2 was fed into the process to increase the green/sustainable benefits and the results were compared with pyrolysis with the addition of N2 (inert gas). Pyrolysis oil was the major product of cattle manure pyrolysis. However, because of its complicated composition, pyrolysis oil cannot be considered a beneficial product. Thus, pyrolysis oil was converted into value-added syngas (H2/CO). Under pyrolysis with an introduction of CO2, the homogeneous reaction converted the volatile compounds and CO2 into CO at >= 510 C. However, the reaction rate leading the CO2 reactivity was insufficient. To improve CO2 reactivity, supported Ni catalyst was introduced for catalytic pyrolysis. The concentration of CO from CO2-induced pyrolysis jumped 3.5 times (42.0 wt%) when the supported Ni catalyst was loaded in comparison with catalyst free pyrolysis setup. The increase in CO generation led to a decrease in the pyrolysis oil content (benzene analogs and polycyclic aromatic hydrocarbons) because the carbon was mostly reallocated to CO. The results of this study offer a strategic means of valorizing manure into syngas by tailoring the carbon length of the pyrogenic products. | Cho, Seong-Heon; Lee, Dong-Jun; Kim, Jee Young; Choi, Ye-Bin; Park, Soyeon; Park, Junsu; Kim, Jung Kon; Kim, Hyunjong; Jung, Sungyup; Kwon, Eilhann E. | Hanyang Univ, Dept Earth Resources & Environm Engn, Seoul 04763, South Korea; Natl Inst Anim Sci NIAS, Dept Anim Environm, Wonju 55365, South Korea; Kyungpook Natl Univ, Dept Environm Engn, Daegu 41566, South Korea | Kim, Jee Young/LKL-4818-2024; Kwon, Eilhann/AGY-3339-2022; Kim, Jung-Wook/AAI-1668-2020 | 56583023200; 57191538179; 57191420766; 58758862500; 58758785600; 57222137944; 56910676600; 58758945100; 55073290800; 9240622100 | sjung001@knu.ac.kr;ek2148@hanyang.ac.kr; | CHEMICAL ENGINEERING JOURNAL | CHEM ENG J | 1385-8947 | 1873-3212 | 479 | SCIE | ENGINEERING, CHEMICAL;ENGINEERING, ENVIRONMENTAL | 2024 | 13.2 | 3.0 | 1.52 | 2025-04-16 | 6 | 6 | Circular economy; Waste-to-energy; Manure; Pyrolysis; CO2 reduction | ANTIBIOTIC-RESISTANCE GENES; LIFE-CYCLE ASSESSMENT; ANAEROBIC-DIGESTION; CO-DIGESTION; PYROLYSIS; GASIFICATION; EMISSIONS; AMMONIA; METHANE; BIOMASS | Circular economy; CO<sub>2</sub> reduction; Manure; Pyrolysis; Waste-to-energy | Carbon; Fertilizers; Gas emissions; Greenhouse gases; Manures; Nickel; Polycyclic aromatic hydrocarbons; Population statistics; Pyrolysis; Synthesis gas; Volatile organic compounds; Animal manure; Cattle manures; Circular economy; CO 2 reduction; Environmental burdens; Ni catalysts; Pyrolysis oil; Syn gas; Valorisation; Waste to energy; Carbon dioxide | English | 2024 | 2024-01-01 | 10.1016/j.cej.2023.147911 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
○ | ○ | Article | ZIF-8 templated mesoporous triazine covalent-organic polymer for adsorptive removal of sulfonamides from water | A highly porous covalent-organic polymer with mesoporosity (named MT-MCTP) was prepared for the first time via ZIF-8 (a zeolitic imidazolate framework, comprised of ZnN4 tetrahedral units interconnected by methyl imidazolate linkers) templated synthesis of microporous triazine polymer (MCTP) and subsequent removal of ZIF-8. MT-MCTP had higher porosity and wider pore size than the conventional MCTP. The prepared MT-MCTP, together with MCTP and commercial activated carbon (AC), was applied to the adsorptive elimination of sulfonamides like sulfamethoxazole and sulfachlorpyridazine from water. MT-MCTP showed the highest kinetic constants among the three adsorbents in the sulfonamides adsorption because of the developed mesopores obtained with the sacrificial ZIF-8 template. Additionally, the adsorbed amounts of sulfamethoxazole and sulfachlorpyridazine over the adsorbents decreased in the order: MT-MCTP > MCTP > AC. MT-MCTP had a maximum adsorption capacity (Q0) of 557 and 534 mg/g for sulfamethoxazole and sulfachlorpyridazine, respectively, which are much higher than the capacity observed with AC. Importantly, MT-MCTP is a recyclable adsorbent with the highest Q0 for sulfamethoxazole compared with any reported results, so far, in near-neutral conditions. Based on the adsorption and surface charge under wide pH ranges, the noticeable sulfamethoxazole adsorption over MT-MCTP could be interpreted with the favorable pore structure (mesopore), surface charge, pi-pi interaction, and hydrogen bonding interaction. | Ahmed, Imteaz; Yoon, Minyoung; Jhung, Sung Hwa | Kyungpook Natl Univ, Dept Chem, Daegu 41566, South Korea; Kyungpook Natl Univ, Green Nano Mat Res Ctr, Daegu 41566, South Korea | Jhung, Sung/AAO-6683-2021 | 55377179600; 25222186500; 6701659467 | sung@knu.ac.kr; | CHEMICAL ENGINEERING JOURNAL | CHEM ENG J | 1385-8947 | 1873-3212 | 484 | SCIE | ENGINEERING, CHEMICAL;ENGINEERING, ENVIRONMENTAL | 2024 | 13.2 | 3.0 | 2.2 | 2025-05-07 | 9 | 9 | Adsorption; Covalent-organic polymer; Mesopore; Microporous triazine polymer; Sulfamethoxazole; ZIF-8 template | SULFAMETHOXAZOLE | Adsorption; Covalent-organic polymer; Mesopore; Microporous triazine polymer; Sulfamethoxazole; ZIF-8 template | English | 2024 | 2024-03-15 | 10.1016/j.cej.2024.149578 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
○ | Meeting Abstract | AI-based binary classification of beta-amyloid plaques using F-18 Florapronol PET/CT | An, Eui Jung; Kim, Jin Beom; Son, Junik; Ahn, Byeong-Cheol; Lee, Sang-Woo; Jeong, Shin Young; Ko, Pan-Woo; Hong, Chae Moon | Kyungpook Natl Univ Hosp, Daegu, South Korea; Kyungpook Natl Univ, Daegu, South Korea | Lee, Sangwoo/MVV-2859-2025; Son, Junik/GVU-0832-2022 | JOURNAL OF NUCLEAR MEDICINE | J NUCL MED | 0161-5505 | 1535-5667 | 65 | SCIE | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | 2024 | 9.1 | 3.1 | 0 | English | 2024 | 2024-06-01 | 바로가기 | 바로가기 | ||||||||||||||||
○ | ○ | Article | Angle shear connectors: Pushout tests, numerical simulations and shear strength model | Despite several advantages i.e. ease in fabrication and installation, economic design, higher structural performance etc., the use of angle shear connector has been limited thus far. This is because, there exists no design equation for this connector type in the design standards. Currently, these connectors are designed through the equations originally developed for other connectors. In this study, the performance of angle shear connectors was investigated through experiments and numerical simulations. The experimental results revealed that the connector height influences the performance which is currently ignored in most of the design code equations for channel connectors. The influence of wide range of other parameters was studied through numerical simulations. A parametric study was conducted considering the effect of angle length, height, thickness, welding length, and strength of concrete. Finally, a theoretical model, capable of predicting the strength of angle shear connectors, was developed and verified against experimental results of this study and others from previous literature. | Lee, Jun-Seop; Haroon, Muhammad; Shin, Kyung-Jae; Woo, Jong-Hun; Lee, Hee-Du | Kyungpook Natl Univ, Reg Ctr Land Infrastruct & Transport Technol, Daegu 41566, South Korea; Kyungpook Natl Univ, Sch Architecture, Daegu 41566, South Korea | Haroon, Muhammad/KTI-4019-2024 | 57221623386; 57211005074; 14039501000; 57210344487; 53865180300 | lhdza@knu.ac.kr; | RESULTS IN ENGINEERING | RESULTS ENG | 2590-1230 | 21 | ESCI | ENGINEERING, MULTIDISCIPLINARY | 2024 | 7.9 | 3.1 | 2.75 | 2025-05-07 | 7 | 7 | Angle shear connectors; Finite element analysis; Push -out tests; Shear strength model | STATIC BEHAVIOR; COMPOSITE BEAMS; CONCRETE; STEEL; CHANNEL | Angle shear connectors; Finite element analysis; Push-out tests; Shear strength model | Numerical models; Shear strength; Angle shear connector; Economic design; Finite element analyse; Push-out tests; Shear connector; Shear strength model; Shears strength; Strength models; Structural performance; Finite element method | English | 2024 | 2024-03 | 10.1016/j.rineng.2023.101737 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
○ | ○ | Article | Designing tannic acid-polyethyleneimine-modified electrode and novel affinity peptide for β-lactoglobulin detection in milk | Harmful substances that cause food allergies can pose a significant threat to consumers along with food safety. According to the World Health Organization (WHO), approximately 10 % of the global population is currently affected by food allergies. Therefore, there is an urgent need for the development of more accurate and precise biosensors capable of detecting these hazardous substances including beta-lactoglobulin. Although numerous detection and analysis methods have been developed, they still suffer from various limitations. In this study, a tannic acid-polyethyleneimine (TA-PEI) network modified screen-printed electrodes (SPE) are newly developed and the binding sequence of peptide against beta-LG was successfully screened using random peptide library. A novel affinity peptide with the desired sequence of S-L-S-P-S-L-W-Q-V-S-M-L-G-G-G-G-E-P-L-Q-L-K-M against beta-lactoglobulin (beta-LG) is designed and synthesized. The synthesized affinity peptide was immobilized on TA-PEI modified SPE to develop peptide-based sensor against beta-LG for the first time. Under successful optimization, the developed sensor exhibited a linear relationship between 50 and 750 ng, with a Kd of 213.9 ng. In addition, the sensor was able to detect beta-LG in cow and goat milk, with average recoveries of 88.5 % and 92.2 %, respectively. | Venkatesan, Manju; Shin, Jae Hwan; Park, Jinyoung; Park, Jong Pil | Chung Ang Univ, Dept Food Sci & Technol, Basic Res Lab, 4726 Seodong Daero, Anseong 17546, South Korea; Kyungpook Natl Univ, Dept Polymer Sci & Engn, 80 Daehak Ro, Daegu 41566, South Korea | Park, Tae/G-1509-2013; PARK, JUN-YOUNG/P-5981-2015 | 58662754300; 58663325900; 57286293400; 9270334400 | jinpark@knu.ac.kr;jppark@cau.ac.kr; | FOOD CHEMISTRY | FOOD CHEM | 0308-8146 | 1873-7072 | 436 | SCIE | CHEMISTRY, APPLIED;FOOD SCIENCE & TECHNOLOGY;NUTRITION & DIETETICS | 2024 | 9.8 | 3.1 | 2.35 | 2025-05-07 | 8 | 8 | Food allergy; Affinity peptide; Electrochemical modification; beta-lactoglobulin; Milk sample analysis | PHAGE DISPLAY; BINDING; ANTIBODY | Affinity peptide; Electrochemical modification; Food allergy; Milk sample analysis; β-lactoglobulin | Allergens; Animals; Cattle; Electrodes; Female; Food Hypersensitivity; Lactoglobulins; Milk; Peptides; Polyethyleneimine; Electrochemical electrodes; Flavonoids; Tannins; affinity peptide; beta lactoglobulin; peptide; polyethyleneimine; polymer; reagent; tannin; unclassified drug; allergen; lactoglobulin; peptide; polyethyleneimine; tannin; Affinity peptides; Electrochemical modification; Food allergies; Lactoglobulin; Milk sample analysis; Poly(ethyleneimine); Screen printed electrodes; Synthesised; Tannic acid; Β-lactoglobulin; amino acid sequence; Article; cow milk; cyclic voltammetry; dangerous goods; differential pulse voltammetry; diffusion coefficient; electrochemical analysis; electrochemical detection; electron; enzyme linked immunosorbent assay; field emission scanning electron microscopy; food allergy; food safety; goat milk; high performance liquid chromatography; molecular docking; peptide library; phage display; sample; screening; synthesis; X ray photoemission spectroscopy; animal; bovine; chemistry; female; milk; Peptides | English | 2024 | 2024-03-15 | 10.1016/j.foodchem.2023.137714 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
○ | ○ | Article | Determination of the geographical origin of chicken (breast and drumstick) using ICP-OES and ICP-MS: Chemometric analysis | This study aimed to develop a geographical origin discrimination analytical method for chicken breasts and drumsticks based on inductively coupled plasma (ICP). The sixty elements were set as variables, and the geographical origin discrimination analysis was conducted through chemometrics. In orthogonal partial least square discriminant analysis (OPLS-DA), twenty-three variable importance in projection (VIP) elements were selected in chicken breasts, and twenty-eight VIP elements were selected in drumsticks. The importance of the selected elements was displayed by the area under the curve (AUC) value of the receiver operating characteristic (ROC). Verification of OPLS-DA was performed through permutation test and good results were obtained. A heatmap was also used as a method for determining the geographical origin, and each top element discriminant classification was 100 % accurate, as determined through canonical discriminant analysis (CDA). This method shows potential as a food analysis tool and can accurately determine the geographic origin of chicken. | An, Jae-Min; Hur, Suel Hye; Kim, Hyoyoung; Lee, Ji Hye; Kim, Yong-Kyoung; Sim, Kyu Sang; Lee, Sung-Eun; Kim, Ho Jin | Natl Agr Prod Qual Management Serv, 141 Yongjeon Ro, Gimcheon Si 39660, Gyeongsangbuk D, South Korea; Kyungpook Natl Univ, Dept Appl Biosci, Daegu 41566, South Korea | Kim, Seung/N-5248-2019; Kim, Young Hoon/F-5424-2012; Sim, Kyu Sang/KBA-6826-2024 | 57855509300; 56645888400; 57224535109; 57217259202; 57918934100; 57212133008; 55890041600; 56372903900 | selpest@knu.ac.kr;rex878@korea.kr; | FOOD CHEMISTRY | FOOD CHEM | 0308-8146 | 1873-7072 | 437 | SCIE | CHEMISTRY, APPLIED;FOOD SCIENCE & TECHNOLOGY;NUTRITION & DIETETICS | 2024 | 9.8 | 3.1 | 2.69 | 2025-05-07 | 10 | 11 | ICP analysis; Inorganic elements; Chicken; Breast; Drumstick; Chemometric | DISCRIMINATION | Breast; Chemometric; Chicken; Drumstick; ICP analysis; Inorganic elements | Animals; Chemometrics; Chickens; Discriminant Analysis; Food Analysis; Geography; Animals; Discriminant analysis; aluminum; barium ion; beryllium; cadmium; calcium ion; cesium; cesium ion; chromium; copper; cuprous ion; dysprosium; erbium; europium; gallium; germanium; gold; hafnium; holmium; iridium; iron; lanthanum; lead; lutetium; magnesium ion; manganese; molybdenum; neodymium; nickel; nitric acid; osmium; palladium; phosphorus; platinum; potassium ion; praseodymium; rhenium; rhodium; rubidium; samarium; selenium; silver; sodium ion; strontium; sulfur; tantalum; technetium; thorium 232; thulium; tin; titanium; tungsten; uranium; uranium 238; vanadium; ytterbium; zinc ion; zirconium; Breast; Chemometrices; Chicken; Chicken breast; Drumstick; Geographical origins; Inductively coupled plasma analysis; Inductively-coupled plasma; Inorganic elements; Partial least squares discriminant analyses (PLSDA); agriculture; analytic method; animal tissue; area under the curve; Article; canonical discriminant analysis; chemometric analysis; chicken drumstick; chicken meat; data analysis; discriminant analysis; food safety; Gallus gallus; geographic origin; inductively coupled plasma mass spectrometry; medical parameters; nonhuman; optical emission spectroscopy; orthogonal partial least square discriminant analysis; pigeon thorax; receiver operating characteristic; spectroscopy; variable importance in projection; animal; chemometrics; food analysis; geography; Inductively coupled plasma | English | 2024 | 2024-03-30 | 10.1016/j.foodchem.2023.137836 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
○ | ○ | Article | Enhancing shear strength of sandy soil using zein biopolymer | Ecofriendly stabilization using various biopolymers has been explored to enhance the soil strength and the stability of geotechnical structures. This study investigates the improvement of shear strength characteristics in sandy soils treated with a novel protein-based biopolymer, zein. Poorly- and well-graded sands are treated with three different biopolymer contents (1, 2, and 3 %) and cured for 1-28 days. Direct shear tests are conducted under four normal stresses to evaluate the shear behavior and strength parameters of treated and untreated sands. The treated sands exhibit higher peak shear stress and more brittle behavior than the untreated sands due to the formation of biopolymer gel between the soil particles. The treated specimens show a greater improvement in shear strength over longer curing periods, with variation based on soil gradation. After curing for 28 days, apparent cohesion and internal friction angle significantly increase, from 8.1 to 257 kPa and from 26 to 45.4 degrees, respectively. Poorly graded sands demonstrate a greater improvement in shear strength compared to well-graded sands, owing to the higher pore spaces available for biopolymer filling and bonding. Thus, incorporating zein biopolymer can significantly enhance the shear strength characteristics of sandy soil, providing a sustainable alternative for soil stabilization in geotechnical engineering. | Babatunde, Quadri Olakunle; Kim, Hong Ju; Byun, Yong-Hoon | Kyungpook Natl Univ, Dept Agr Civil Engn, 80 Daehak Ro, Daegu 41566, South Korea | Byun, Yong-Hoon/JKI-8441-2023 | 58102290600; 59326904300; 42761048000 | yhbyun@knu.ac.kr; | RESULTS IN ENGINEERING | RESULTS ENG | 2590-1230 | 24 | ESCI | ENGINEERING, MULTIDISCIPLINARY | 2024 | 7.9 | 3.1 | 3.14 | 2025-05-07 | 12 | 11 | Biopolymer; Shear strength; Soil stabilization; Sustainability; Zein | XANTHAN GUM BIOPOLYMER; BEHAVIOR | Biopolymer; Shear strength; Soil stabilization; Sustainability; Zein | Sand; Shear stress; Sustainable development; Zein; Eco-friendly; Geotechnical structure; Novel proteins; Sandy soils; Sandysoil; Shears strength; Soil stabilization; Soil strength; Strength characteristics; Well graded sand; Shear strength | English | 2024 | 2024-12 | 10.1016/j.rineng.2024.102891 | 바로가기 | 바로가기 | 바로가기 | 바로가기 | |||
○ | ○ | Article | Extracting the speed of sound in quark-gluon plasma with ultrarelativistic lead-lead collisions at the LHC | Ultrarelativistic nuclear collisions create a strongly interacting state of hot and dense quark-gluon matter that exhibits a remarkable collective flow behavior with minimal viscous dissipation. To gain deeper insights into its intrinsic nature and fundamental degrees of freedom, we determine the speed of sound in an extended volume of quark-gluon plasma using lead-lead (PbPb) collisions at a center-of-mass energy per nucleon pair of 5.02 TeV. The data were recorded by the CMS experiment at the CERN LHC and correspond to an integrated luminosity of 0.607 nb(-1). The measurement is performed by studying the multiplicity dependence of the average transverse momentum of charged particles emitted in head-on PbPb collisions. Our findings reveal that the speed of sound in this matter is nearly half the speed of light, with a squared value of 0.241 +/- 0.002 (stat) +/- 0.016 9(syst) in natural units. The effective medium temperature, estimated using the mean transverse momentum, is 219 +/- 8 The measured squared speed of sound at this temperature aligns precisely with predictions from lattice quantum chromodynamic (QCD) calculations. This result provides a stringent constraint on the equation of state of the created medium and direct evidence for a deconfined QCD phase being attained in relativistic nuclear collisions. | Hayrapetyan, A.; Tumasyan, A.; Adam, W.; Andrejkovic, J. W.; Bergauer, T.; Chatterjee, S.; Damanakis, K.; Dragicevic, M.; Hussain, P. S.; Jeitler, M.; Krammer, N.; Li, A.; Liko, D.; Mikulec, I.; Schieck, J.; Schoefbeck, R.; Schwarz, D.; Sonawane, M.; Templ, S.; Waltenberger, W.; Wulz, C-E; Darwish, M. R.; Janssen, T.; Van Mechelen, P.; Bols, E. S.; D'Hondt, J.; Dansana, S.; De Moor, A.; Delcourt, M.; El Faham, H.; Lowette, S.; Makarenko, I.; Mueller, D.; Sahasransu, A. R.; Tavernier, S.; Tytgat, M.; Van Onsem, G. P.; Van Putte, S.; Vannerom, D.; Clerbaux, B.; Das, A. K.; De Lentdecker, G.; Favart, L.; Gianneios, P.; Hohov, D.; Jaramillo, J.; Khalilzadeh, A.; Lee, K.; Mahdavikhorrami, M.; Malara, A.; Paredes, S.; Postiau, N.; Thomas, L.; Vanden Bemden, M.; Vander Velde, C.; Vanlaer, P.; De Coen, M.; Dobur, D.; Hong, Y.; Knolle, J.; Lambrecht, L.; Mestdach, G.; Amarilo, K. Mota; Rendon, C.; Samalan, A.; Skovpen, K.; Van den Bossche, N.; van der Linden, J.; Wezenbeek, L.; Benecke, A.; Bethani, A.; Bruno, G.; Caputo, C.; Delaere, C.; Donertas, I. S.; Giammanco, A.; Jaffel, K.; Jain, Sa; Lemaitre, V.; Lidrych, J.; Mastrapasqua, P.; Mondal, K.; Tran, T. T.; Wertz, S.; Alves, G. A.; Coelho, E.; Hensel, C.; Menezes De Oliveira, T.; Moraes, A.; Rebello Teles, P.; Soeiro, M.; Alda Junior, W. L.; Alves Gallo Pereira, M.; Barroso Ferreira Filho, M.; Brandao Malbouisson, H.; Carvalho, W.; Chinellato, J.; Da Costa, E. M.; Da Silveira, G. G.; De Jesus Damiao, D.; Fonseca De Souza, S.; Gomes De Souza, R.; Martins, J.; Mora Herrera, C.; Mundim, L.; Nogima, H.; Pinheiro, J. P.; Santoro, A.; Sznajder, A.; Thiel, M.; Vilela Pereira, A.; Bernardes, C. A.; Calligaris, L.; Fernandez Perez Tomei, T. R.; Gregores, E. M.; Mercadante, P. G.; Novaes, S. F.; Orzari, B.; Padula, Sandra S.; Aleksandrov, A.; Antchev, G.; Hadjiiska, R.; Iaydjiev, P.; Misheva, M.; Shopova, M.; Sultanov, G.; Dimitrov, A.; Litov, L.; Pavlov, B.; Petkov, P.; Petrov, A.; Shumka, E.; Keshri, S.; Thakur, S.; Cheng, T.; Javaid, T.; Yuan, L.; Hu, Z.; Liu, J.; Yi, K.; Chen, G. M.; Chen, H. S.; Chen, M.; Iemmi, F.; Jiang, C. H.; Kapoor, A.; Liao, H.; Liu, Z-A; Sharma, R.; Song, J. N.; Tao, J.; Wang, C.; Wang, J.; Wang, Z.; Zhang, H.; Agapitos, A.; Ban, Y.; Levin, A.; Li, C.; Li, Q.; Mao, Y.; Qian, S. J.; Sun, X.; Wang, D.; Yang, H.; Zhang, L.; Zhou, C.; You, Z.; Lu, N.; Bauer, G.; Gao, X.; Leggat, D.; Okawa, H.; Lin, Z.; Lu, C.; Xiao, M.; Avila, C.; Barbosa Trujillo, D. A.; Cabrera, A.; Florez, C.; Fraga, J.; Reyes Vega, J. A.; Mejia Guisao, J.; Ramirez, F.; Rodriguez, M.; Ruiz Alvarez, J. D.; Giljanovic, D.; Godinovic, N.; Lelas, D.; Sculac, A.; Kovac, M.; Sculac, T.; Bargassa, P.; Brigljevic, V.; Chitroda, B. K.; Ferencek, D.; Mishra, S.; Starodumov, A.; Susa, T.; Attikis, A.; Christoforou, K.; Konstantinou, S.; Mousa, J.; Nicolaou, C.; Ptochos, F.; Razis, P. A.; Rykaczewski, H.; Saka, H.; Stepennov, A.; Finger, M.; Finger, M., Jr.; Kveton, A.; Ayala, E.; Carrera Jarrin, E.; Abdelalim, A. A.; Salama, E.; Lotfy, A.; Mahmoud, M. A.; Ehataht, K.; Kadastik, M.; Lange, T.; Nandan, S.; Nielsen, C.; Pata, J.; Raidal, M.; Tani, L.; Veelken, C.; Kirschenmann, H.; Osterberg, K.; Voutilainen, M.; Bharthuar, S.; Brucken, E.; Garcia, F.; Kallonen, K. T. S.; Kinnunen, R.; Lampen, T.; Lassila-Perini, K.; Lehti, S.; Linden, T.; Martikainen, L.; Myllymaki, M.; Rantanen, M. M.; Siikonen, H.; Tuominen, E.; Tuominiemi, J.; Luukka, P.; Petrow, H.; Besancon, M.; Couderc, F.; Dejardin, M.; Denegri, D.; Faure, J. L.; Ferri, F.; Ganjour, S.; Gras, P.; de Monchenault, G. Hamel; Lohezic, V.; Malcles, J.; Rander, J.; Rosowsky, A.; Sahin, M. O.; Savoy-Navarro, A.; Simkina, P.; Titov, M.; Tornago, M.; Barrera, C. Baldenegro; Beaudette, F.; Perraguin, A. Buchot; Busson, P.; Cappati, A.; Charlot, C.; Chiusi, M.; Damas, F.; Davignon, O.; De Wit, A.; Alves, B. A. Fontana Santos; Ghosh, S.; Gilbert, A.; de Cassagnac, R. Granier; Hakimi, A.; Harikrishnan, B.; Kalipoliti, L.; Liu, G.; Motta, J.; Nguyen, M.; Ochando, C.; Portales, L.; Salerno, R.; Sauvan, J. B.; Sirois, Y.; Tarabini, A.; Vernazza, E.; Zabi, A.; Zghiche, A.; Agram, J-L; Andrea, J.; Apparu, D.; Bloch, D.; Brom, J-M; Chabert, E. C.; Collard, C.; Falke, S.; Goerlach, U.; Grimault, C.; Haeberle, R.; Le Bihan, A-C; Meena, M.; Saha, G.; Sessini, M. A.; Van Hove, P.; Beauceron, S.; Blancon, B.; Boudoul, G.; Chanon, N.; Choi, J.; Contardo, D.; Depasse, P.; Dozen, C.; El Mamouni, H.; Fay, J.; Gascon, S.; Gouzevitch, M.; Greenberg, C.; Grenier, G.; Ille, B.; Laktineh, I. B.; Lethuillier, M.; Mirabito, L.; Perries, S.; Purohit, A.; Vander Donckt, M.; Verdier, P.; Xiao, J.; Chokheli, D.; Lomidze, I.; Tsamalaidze, Z.; Botta, V.; Feld, L.; Klein, K.; Lipinski, M.; Meuser, D.; Pauls, A.; Roewert, N.; Teroerde, M.; Diekmann, S.; Dodonova, A.; Eich, N.; Eliseev, D.; Engelke, F.; Erdmann, J.; Erdmann, M.; Fackeldey, P.; Fischer, B.; Hebbeker, T.; Hoepfner, K.; Ivone, F.; Jung, A.; Lee, M. Y.; Mastrolorenzo, L.; Mausolf, F.; Merschmeyer, M.; Meyer, A.; Mukherjee, S.; Noll, D.; Nowotny, F.; Pozdnyakov, A.; Rath, Y.; Redjeb, W.; Rehm, F.; Reithler, H.; Sarkar, U.; Sarkisovi, V.; Schmidt, A.; Sharma, A.; Spah, J. L.; Stein, A.; Torres Da Silva De Araujo, F.; Vigilante, L.; Wiedenbeck, S.; Zaleski, S.; Dziwok, C.; Fluegge, G.; Ahmad, W. Haj; Kress, T.; Nowack, A.; Pooth, O.; Stahl, A.; Ziemons, T.; Zotz, A.; Petersen, H. Aarup; Martin, M. Aldaya; Alimena, J.; Amoroso, S.; An, Y.; Baxter, S.; Bayatmakou, M.; Gonzalez, H. Becerril; Behnke, O.; Belvedere, A.; Bhattacharya, S.; Blekman, F.; Borras, K.; Campbell, A.; Cardini, A.; Cheng, C.; Colombina, F.; Rodriguez, S. Consuegra; Silva, G. Correia; De Silva, M.; Eckerlin, G.; Eckstein, D.; Banos, L. I. Estevez; Filatov, O.; Gallo, E.; Geiser, A.; Giraldi, A.; Greau, G.; Guglielmi, V.; Guthoff, M.; Hinzmann, A.; Jafari, A.; Jeppe, L.; Jomhari, N. Z.; Kaech, B.; Kasemann, M.; Kleinwort, C.; Kogler, R.; Komm, M.; Kruecker, D.; Lange, W.; Pernia, D. Leyva; Lipka, K.; Lohmann, W.; Mankel, R.; Melzer-Pellmann, I-A; Morentin, M. Mendizabal; Meyer, A. B.; Milella, G.; Mussgiller, A.; Nair, L. P.; Nuernberg, A.; Otarid, Y.; Park, J.; Adan, D. Perez; Ranken, E.; Raspereza, A.; Lopes, B. Ribeiro; Ruebenach, J.; Saggio, A.; Scham, M.; Schnake, S.; Schuetze, P.; Schwanenberger, C.; Selivanova, D.; Sharko, K.; Shchedrolosiev, M.; Ricardo, R. E. Sosa; Stafford, D.; Vazzoler, F.; Barroso, A. Ventura; Walsh, R.; Wang, Q.; Wen, Y.; Wichmann, K.; Wiens, L.; Wissing, C.; Yang, Y.; Santos, A. Zimermmane Castro; Albrecht, A.; Albrecht, S.; Antonello, M.; Bein, S.; Benato, L.; Bollweg, S.; Bonanomi, M.; Connor, P.; Eich, M.; El Morabit, K.; Fischer, Y.; Froehlich, A.; Garbers, C.; Garutti, E.; Grohsjean, A.; Hajheidari, M.; Haller, J.; Jabusch, H. R.; Kasieczka, G.; Keicher, P.; Klanner, R.; Korcari, W.; Kramer, T.; Kutzner, V.; Labe, F.; Lange, J.; Lobanov, A.; Matthies, C.; Mehta, A.; Moureaux, L.; Mrowietz, M.; Nigamova, A.; Nissan, Y.; Paasch, A.; Rodriguez, K. J. Pena; Quadfasel, T.; Raciti, B.; Rieger, M.; Savoiu, D.; Schindler, J.; Schleper, P.; Schroeder, M.; Schwandt, J.; Sommerhalder, M.; Stadie, H.; Steinbrueck, G.; Tews, A.; Wolf, M.; Brommer, S.; Burkart, M.; Butz, E.; Chwalek, T.; Dierlamm, A.; Droll, A.; Faltermann, N.; Giffels, M.; Gottmann, A.; Hartmann, F.; Hofsaess, R.; Horzela, M.; Husemann, U.; Kieseler, J.; Klute, M.; Koppenhoefer, R.; Lawhorn, J. M.; Link, M.; Lintuluoto, A.; Maier, S.; Mitra, S.; Mormile, M.; Mueller, Th; Neukum, M.; Oh, M.; Presilla, M.; Quast, G.; Rabbertz, K.; Regnery, B.; Shadskiy, N.; Shvetsov, I.; Simonis, H. J.; Toms, M.; Trevisani, N.; Ulrich, R.; Von Cube, R. F.; Wassmer, M.; Wieland, S.; Wittig, F.; Wolf, R.; Zuo, X.; Anagnostou, G.; Daskalakis, G.; Kyriakis, A.; Papadopoulos, A.; Stakia, A.; Kontaxakis, P.; Melachroinos, G.; Panagiotou, A.; Papavergou, I.; Paraskevas, I.; Saoulidou, N.; Theofilatos, K.; Tziaferi, E.; Vellidis, K.; Zisopoulos, I.; Bakas, G.; Chatzistavrou, T.; Karapostoli, G.; Kousouris, K.; Papakrivopoulos, I.; Siamarkou, E.; Tsipolitis, G.; Zacharopoulou, A.; Adamidis, K.; Bestintzanos, I.; Evangelou, I.; Foudas, C.; Kamtsikis, C.; Katsoulis, P.; Kokkas, P.; Kioseoglou, P. G. Kosmoglou; Manthos, N.; Papadopoulos, I.; Strologas, J.; Bartok, M.; Hajdu, C.; Horvath, D.; Marton, K.; Sikler, F.; Veszpremi, V.; Csanad, M.; Farkas, K.; Gadallah, M. M. A.; Kadlecsik, A.; Major, P.; Mandal, K.; Pasztor, G.; Radl, A. J.; Veres, G. I.; Raics, P.; Ujvari, B.; Zilizi, G.; Bencze, G.; Czellar, S.; Molnar, J.; Szillasi, Z.; Csorgo, T.; Nemes, F.; Novak, T.; Babbar, J.; Bansal, S.; Beri, S. B.; Bhatnagar, V.; Chaudhary, G.; Chauhan, S.; Dhingra, N.; Kaur, A.; Kaur, A.; Kaur, H.; Kaur, M.; Kumar, S.; Sandeep, K.; Sheokand, T.; Singh, J. B.; Singla, A.; Ahmed, A.; Bhardwaj, A.; Chhetri, A.; Choudhary, B. C.; Kumar, A.; Kumar, A.; Naimuddin, M.; Ranjan, K.; Saumya, S.; Baradia, S.; Barman, S.; Bhattacharya, S.; Dutta, S.; Dutta, S.; Sarkar, S.; Ameen, M. M.; Behera, P. K.; Behera, S. C.; Chatterjee, S.; Jana, P.; Kalbhor, P.; Komaragiri, J. R.; Kumar, D.; Panwar, L.; Pujahari, P. R.; Saha, N. R.; Sharma, A.; Sikdar, A. K.; Verma, S.; Dugad, S.; Kumar, M.; Mohanty, G. B.; Suryadevara, P.; Bala, A.; Banerjee, S.; Chatterjee, R. M.; Dewanjee, R. K.; Guchait, M.; Jain, Sh; Jaiswal, A.; Karmakar, S.; Kumar, S.; Majumder, G.; Mazumdar, K.; Parolia, S.; Thachayath, A.; Bahinipati, S.; Kar, C.; Maity, D.; Mal, P.; Mishra, T.; Bindhu, V. K. Muraleedharan Nair; Naskar, K.; Nayak, A.; Sadangi, P.; Saha, P.; Swain, S. 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Bozok Univ Rektorlugu, Yozgat, Turkiye; Marmara Univ, Istanbul, Turkiye; Milli Savunma Univ, Istanbul, Turkiye; Kafkas Univ, Kars, Turkiye; Istanbul Okan Univ, Istanbul, Turkiye; Hacettepe Univ, Ankara, Turkiye; Istanbul Univ Cerrahpasa, Fac Engn, Istanbul, Turkiye; Yildiz Tech Univ, Istanbul, Turkiye; Vrije Univ Brussel, Brussels, Belgium; Univ Southampton, Sch Phys & Astron, Southampton, Hants, England; Univ Bristol, Bristol, Avon, England; Univ Durham, IPPP, Durham, England; Monash Univ, Fac Sci, Clayton, Vic, Australia; Univ Torino, Turin, Italy; Bethel Univ, St Paul, MN USA; Karamanoglu Mehmetbey Univ, Karaman, Turkiye; CALTECH, Pasadena, CA 91125 USA; US Naval Acad, Annapolis, MD 21402 USA; Bingol Univ, Bingol, Turkiye; Georgian Tech Univ, Tbilisi, Georgia; Sinop Univ, Sinop, Turkiye; Erciyes Univ, Kayseri, Turkiye; Horia Hulubei Natl Inst Phys & Nucl Engn IFIN HH, Bucharest, Romania; CERN, Geneva, Switzerland; Texas A&M Univ Qatar, Doha, Qatar; Kyungpook Natl Univ, Daegu, South Korea; Univ Antwerp, Antwerp, Belgium; Yerevan Phys Inst, Yerevan, Armenia; Northeastern Univ, Boston, MA 02115 USA; Imperial Coll, London, England; Uzbek Acad Sci, Inst Nucl Phys, Tashkent, Uzbekistan | ; Osherson, Marc/LWZ-8687-2024; Lee, Jason/B-9701-2014; Shopova, Mariana/HKW-0149-2023; Wong, Wei Ying/ACD-6480-2022; Sagir, Sinan/A-5219-2018; ZHANG, YUTING/HOH-4131-2023; Viliani, Lorenzo/AAU-3462-2021; Flix, Josep/G-5414-2012; Zhou, You/ABH-2989-2021; Iorio, Alberto Orso Maria/GXA-0233-2022; D'Alessandro, Raffaello/F-5897-2015; Kyberd, Paul/P-1092-2014; Venditti, Rosamaria/IVH-5947-2023; ALI, MOHD/IUM-6916-2023; abdelalim, abdelrahman/AAV-8977-2020; Akgun, Bora/AAM-8311-2021; Focardi, Ettore/E-7376-2012; Kharlamova, Tatyana/AAQ-5430-2020; Ramos, Juan/AAF-3114-2019; Alison, Jamie/AAD-5013-2022; liu, wenli/JRW-0517-2023; Tadel, Matevz/H-3204-2016; Sonnadara, Upul/E-6359-2010; Demiragli, Zeynep/IZE-1919-2023; Aarrestad, Thea/GLV-3031-2022; Colaleo, Anna/JTS-3830-2023; Sánchez-Rodríguez, Alexander/JLK-9336-2023; 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Cassese, Antonio/R-1713-2016; Giammanco, Andrea/O-5017-2019; Hegeman, Jeroen/HJA-1005-2022; Mishra, Trilochan/A-7947-2010; Milosevic, Jelena/ABG-9850-2020; Padula, Sandra S./G-3560-2012; Simone, Federica/HDM-3686-2022; Matorras, Francisco/I-4983-2015; Hsu, Tsai-Hsuan Tony/GOV-4692-2022; Asawatangtrakuldee, Chayanit/GLS-1465-2022; Fasanella, Daniele/ABD-9759-2020; Camporesi, Tiziano/F-8307-2013; Palencia Cortezon, Jose Enrique/F-1059-2017; Pérez-Calero Yzquierdo, Antonio/F-2235-2013; Mousa, Jehad/I-8019-2019; Aimè, Chiara/GXG-4131-2022; Cerri, Olmo/Z-3579-2019; Malagalage, Kithsiri/F-7629-2018; Bermudez Martinez, Armando/HHN-4625-2022; Cardini, Andrea/KUF-0984-2024; Venturi, Andrea/J-1877-2012; Gerosa, Raffaele/AGL-6079-2022; Petkov, Peicho/M-2080-2016; Markina, Anastasia/E-3390-2012; Elkafrawy, Tamer/HPF-5873-2023; Gregores, Eduardo/F-8702-2012; Pauwels, Kristof/AAE-1951-2019; Martin Perez, Cristina/MEP-9682-2025; Gil Da Silveira, Gustavo/N-7279-2014; Tiras, Emrah/ABG-2354-2020; Sert, H/ABA-5645-2020; 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57195762012; 59825755800; 57202021393; 57195761975; 56354213100; 57203666599; 57202851343; 57224990533; 57220509056; 57199995872; 7006306242; 9739808000; 57217846115; 7003412423; 16445120800; 6508005859; 35228097700; 6602912106; 55728695200; 57188571026; 57209048617; 7004261852; 57202018147; 6602446917 | cms-publication-committee-chair@cern.ch; | REPORTS ON PROGRESS IN PHYSICS | REP PROG PHYS | 0034-4885 | 1361-6633 | 87 | 7 | SCIE | PHYSICS, MULTIDISCIPLINARY | 2024 | 20.7 | 3.1 | 2.12 | 2025-05-07 | 6 | 8 | CMS; quark-gluon plasma; speed of sound; ultra-central; QCD equation of state | STATE | CMS; QCD equation of state; quark-gluon plasma; speed of sound; ultra-central | English | 2024 | 2024-07 | 10.1088/1361-6633/ad4b9b | 바로가기 | 바로가기 | 바로가기 | 바로가기 | ||
○ | ○ | Article | Observation of quantum entanglement in top quark pair production in proton-proton collisions at √s=13 TeV | Entanglement is an intrinsic property of quantum mechanics and is predicted to be exhibited in the particles produced at the Large Hadron Collider. A measurement of the extent of entanglement in top quark-antiquark (t (t) over bar) events produced in proton-proton collisions at a center-of-mass energy of 13 TeV is performed with the data recorded by the CMS experiment at the CERN LHC in 2016, and corresponding to an integrated luminosity of 36.3 fb(-1). The events are selected based on the presence of two leptons with opposite charges and high transverse momentum. An entanglement-sensitive observable D is derived from the top quark spin-dependent parts of the t (t) over bar production density matrix and measured in the region of the t (t) over bar production threshold. Values of D < -1/3 are evidence of entanglement and D is observed (expected) to be -0.480(-0.029)(+0.026) (-0.467(-0.029)(+0.026)) at the parton level. With an observed significance of 5.1 standard deviations with respect to the non-entangled hypothesis, this provides observation of quantum mechanical entanglement within t (t) over bar pairs in this phase space. This measurement provides a new probe of quantum mechanics at the highest energies ever produced. | Hayrapetyan, A.; Tumasyan, A.; Adam, W.; Andrejkovic, J. W.; Bergauer, T.; Chatterjee, S.; Damanakis, K.; Dragicevic, M.; Hoang, A.; Hussain, P. S.; Jeitler, M.; Krammer, N.; Li, A.; Liko, D.; Mikulec, I.; Schieck, J.; Schoefbeck, R.; Schwarz, D.; Sonawane, M.; Templ, S.; Waltenberger, W.; Wulz, C. -E.; Janssen, T.; Van Laer, T.; Van Mechelen, P.; Breugelmans, N.; D'Hondt, J.; Dansana, S.; De Moor, A.; Delcourt, M.; Heyen, F.; Lowette, S.; Makarenko, I.; Muller, D.; Tavernier, S.; Tytgat, M.; Van Onsem, G. P.; Van Putte, S.; Vannerom, D.; Bilin, B.; Clerbaux, B.; Das, A. K.; De Lentdecker, G.; Evard, H.; Favart, L.; Gianneios, P.; Jaramillo, J.; Khalilzadeh, A.; Khan, F. A.; Lee, K.; Mahdavikhorrami, M.; Malara, A.; Paredes, S.; Shahzad, M. A.; Thomas, L.; Vanden Bemden, M.; Vander Velde, C.; Vanlaer, P.; De Coen, M.; Dobur, D.; Gokbulut, G.; Hong, Y.; Knolle, J.; Lambrecht, L.; Marckx, D.; Amarilo, K. Mota; Samalan, A.; Skovpen, K.; Van Den Bossche, N.; van der Linden, J.; Wezenbeek, L.; Benecke, A.; Bethani, A.; Bruno, G.; Caputo, C.; De Jeneret, J. De Favereau; Delaere, C.; Donertas, I. S.; Giammanco, A.; Guzel, A. O.; Jain, Sa; Lemaitre, V.; Lidrych, J.; Mastrapasqua, P.; Tran, T. T.; Wertz, S.; Alves, G. A.; Alves Gallo Pereira, M.; Coelho, E.; Correia Silva, G.; Hensel, C.; Menezes De Oliveira, T.; Mora Herrera, C.; Moraes, A.; Rebello Teles, P.; Soeiro, M.; Vilela Pereira, A.; Alda Junior, W. L.; Barroso Ferreira Filho, M.; Brandao Malbouisson, H.; Carvalho, W.; Chinellato, J.; Da Costa, E. M.; Da Silveira, G. G.; De Jesus Damiao, D.; Fonseca De Souza, S.; Gomes De Souza, R.; Macedo, M.; Martins, J.; Mundim, L.; Nogima, H.; Pinheiro, J. P.; Santoro, A.; Sznajder, A.; Thiel, M.; Bernardes, C. A.; Calligaris, L.; Fernandez Perez Tomei, T. R.; Gregores, E. M.; Lopes Da Costa, B.; Maietto Silverio, I.; Mercadante, P. G.; Novaes, S. F.; Orzari, B.; Padula, Sandra S.; Aleksandrov, A.; Antchev, G.; Hadjiiska, R.; Iaydjiev, P.; Misheva, M.; Shopova, M.; Sultanov, G.; Dimitrov, A.; Litov, L.; Pavlov, B.; Petkov, P.; Petrov, A.; Shumka, E.; Keshri, S.; Laroze, D.; Thakur, S.; Cheng, T.; Javaid, T.; Yuan, L.; Hu, Z.; Liang, Z.; Liu, J.; Yi, K.; Chen, G. M.; Chen, H. S.; Chen, M.; Iemmi, F.; Jiang, C. H.; Kapoor, A.; Liao, H.; Liu, Z. -A.; Sharma, R.; Song, J. 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A.; Sehrawat, A.; Valencia Palomo, L.; Ayala, G.; Castilla-Valdez, H.; Crotte Ledesma, H.; De La Cruz-Burelo, E.; Heredia-De La Cruz, I.; Lopez-Fernandez, R.; Mejia Guisao, J.; Mondragon Herrera, C. A.; Sanchez Hernandez, A.; Oropeza Barrera, C.; Ramirez Guadarrama, D. L.; Ramirez Garcia, M.; Bautista, I.; Pedraza, I.; Salazar Ibarguen, H. A.; Uribe Estrada, C.; Bubanja, I.; Raicevic, N.; Butler, P. H.; Ahmad, A.; Asghar, M. I.; Awais, A.; Awan, M. I. M.; Hoorani, H. R.; Khan, W. A.; Avati, V.; Grzanka, L.; Malawski, M.; Bialkowska, H.; Bluj, M.; Gorski, M.; Kazana, M.; Szleper, M.; Zalewski, P.; Bunkowski, K.; Doroba, K.; Kalinowski, A.; Konecki, M.; Krolikowski, J.; Muhammad, A.; Pozniak, K.; Zabolotny, W.; Araujo, M.; Bastos, D.; Beiro Da Cruz E Silva, C.; Boletti, A.; Bozzo, M.; Camporesi, T.; Da Molin, G.; Faccioli, P.; Gallinaro, M.; Hollar, J.; Leonardo, N.; Marozzo, G. B.; Niknejad, T.; Petrilli, A.; Pisano, M.; Seixas, J.; Varela, J.; Wulff, J. W.; Adzic, P.; Milenovic, P.; Dordevic, M.; Milosevic, J.; Rekovic, V.; Alcaraz Maestre, J.; Bedoya, Cristina F.; Carretero, Oliver M.; Cepeda, M.; Cerrada, M.; Colino, N.; De La Cruz, B.; Delgado Peris, A.; Escalante Del Valle, A.; Fernandez Del Val, D.; Fernandez Ramos, J. P.; Flix, J.; Fouz, M. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Martin Viscasillas, E.; Moran, D.; Morcillo Perez, C. M.; Navarro Tobar, A.; Perez Dengra, C.; Perez-Calero Yzquierdo, A.; Puerta Pelayo, J.; Redondo, I.; Sanchez Navas, S.; Sastre, J.; Vazquez Escobar, J.; de Troconiz, J. F.; Alvarez Gonzalez, B.; Cuevas, J.; Fernandez Menendez, J.; Folgueras, S.; Gonzalez Caballero, I.; Gonzalez Fernandez, J. R.; Leguina, P.; Palencia Cortezon, E.; Prado Pico, J.; Ramon Alvarez, C.; Rodriguez Bouza, V.; Soto Rodriguez, A.; Trapote, A.; Vico Villalba, C.; Vischia, P.; Bhowmik, S.; Blanco Fernandez, S.; Brochero Cifuentes, J. A.; Cabrillo, I. J.; Calderon, A.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Lopez Ruiz, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Matorras Cuevas, P.; Navarrete Ramos, E.; Piedra Gomez, J.; Scodellaro, L.; Vila, I.; Vizan Garcia, J. M.; Kailasapathy, B.; Wickramarathna, D. D. C.; Dharmaratna, W. G. D.; Liyanage, K.; Perera, N.; Abbaneo, D.; Amendola, C.; Auffray, E.; Auzinger, G.; Baechler, J.; Barney, D.; Martinez, A. Bermudez; Bianco, M.; Bin Anuar, A. A.; Bocci, A.; Borgonovi, L.; Botta, C.; Brondolin, E.; Caillol, C.; Cerminara, G.; Chernyavskaya, N.; d'Enterria, D.; Dabrowski, A.; David, A.; De Roeck, A.; Defranchis, M. M.; Deile, M.; Dobson, M.; Franzoni, G.; Funk, W.; Giani, S.; Gigi, D.; Gill, K.; Glege, F.; Hegeman, J.; Heikkila, J. K.; Huber, B.; Innocente, V.; James, T.; Janot, P.; Kaluzinska, O.; Karacheban, O.; Laurila, S.; Lecoq, P.; Leutgeb, E.; Lourenco, C.; Malgeri, L.; Mannelli, M.; Matthewman, M.; Mehta, A.; Meijers, F.; Mersi, S.; Meschi, E.; Milosevic, V.; Monti, F.; Moortgat, F.; Mulders, M.; Neutelings, I.; Orfanelli, S.; Pantaleo, F.; Petrucciani, G.; Pfeiffer, A.; Pierini, M.; Qu, H.; Rabady, D.; Lopes, B. Ribeiro; Rovere, M.; Sakulin, H.; Cruz, S. Sanchez; Scarfi, S.; Schwick, C.; Selvaggi, M.; Sharma, A.; Shchelina, K.; Silva, P.; Sphicas, P.; Leiton, A. G. Stahl; Steen, A.; Summers, S.; Treille, D.; Tropea, P.; Walter, D.; Wanczyk, J.; Wang, J.; Wozniak, K. A.; Wuchterl, S.; Zehetner, P.; Zejdl, P.; Zeuner, W. D.; Bevilacqua, T.; Caminada, L.; Ebrahimi, A.; Erdmann, W.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Kotlinski, D.; Lange, C.; Missiroli, M.; Noehte, L.; Rohe, T.; Aarrestad, T. K.; Androsov, K.; Backhaus, M.; Bonomelli, G.; Calandri, A.; Cazzaniga, C.; Datta, K.; D'archiac, P. De Bryas Dexmiers; De Cosa, A.; Dissertori, G.; Dittmar, M.; Donega, M.; Eble, F.; Galli, M.; Gedia, K.; Glessgen, F.; Grab, C.; Harringer, N.; Harte, T. G.; Hits, D.; Lustermann, W.; Lyon, A. -M.; Manzoni, R. A.; Marchegiani, M.; Marchese, L.; Perez, C. Martin; Mascellani, A.; Nessi-Tedaldi, F.; Pauss, F.; Perovic, V.; Pigazzini, S.; Reissel, C.; Ristic, B.; Riti, F.; Seidita, R.; Steggemann, J.; Tarabini, A.; Valsecchi, D.; Wallny, R.; Amsler, C.; Bartschi, P.; Canelli, M. F.; Cormier, K.; Huwiler, M.; Jin, W.; Jofrehei, A.; Kilminster, B.; Leontsinis, S.; Liechti, S. P.; Macchiolo, A.; Meiring, P.; Meng, F.; Molinatti, U.; Motta, J.; Reimers, A.; Robmann, P.; Senger, M.; Shokr, E.; Stager, F.; Tramontano, R.; Adloff, C.; Bhowmik, D.; Kuo, C. M.; Lin, W.; Rout, P. K.; Tiwari, P. C.; Yu, S. S.; Ceard, L.; Chen, K. F.; Chen, P. S.; Chen, Z. G.; De Iorio, A.; Hou, W. -S.; Hsu, T. H.; Kao, Y. W.; Karmakar, S.; Kole, G.; Li, Y. Y.; Lu, R. -S.; Paganis, E.; Su, X. F.; Thomas-Wilsker, J.; Tsai, L. S.; Tsionou, D.; Wu, H. Y.; Yazgan, E.; Asawatangtrakuldee, C.; Srimanobhas, N.; Wachirapusitanand, V.; Agyel, D.; Boran, F.; Dolek, F.; Demiroglu, Z. S.; Eskut, E.; Guler, Y.; Guler, E. Gurpinar; Isik, C.; Kara, O.; Topaksu, A. Kayis; Kiminsu, U.; Onengut, G.; Ozdemir, K.; Polatoz, A.; Tali, B.; Tok, U. G.; Turkcapar, S.; Uslan, E.; Zorbakir, I. S.; Sokmen, G.; Yalvac, M.; Akgun, B.; Atakisi, I. O.; Gulmez, E.; Kaya, M.; Kaya, O.; Tekten, S.; Cakir, A.; Cankocak, K.; Dincer, G. G.; Komurcu, Y.; Sen, S.; Aydilek, O.; Hacisahinoglu, B.; Hos, I.; Kaynak, B.; Ozkorucuklu, S.; Potok, O.; Sert, H.; Simsek, C.; Zorbilmez, C.; Cerci, S.; Isildak, B.; Cerci, D. Sunar; Yetkin, T.; Boyaryntsev, A.; Grynyov, B.; Levchuk, L.; Anthony, D.; Brooke, J. J.; Bundock, A.; Bury, F.; Clement, E.; Cussans, D.; Flacher, H.; Glowacki, M.; Goldstein, J.; Heath, H. F.; Holmberg, M-L; Kreczko, L.; Paramesvaran, S.; Robertshaw, L.; El Nasr-Storey, S. Seif; Smith, V. J.; Stylianou, N.; Pass, K. Walkingshaw; Ball, A. H.; Bell, K. W.; Belyaev, A.; Brew, C.; Brown, R. M.; Cockerill, D. J. A.; Cooke, C.; Elliot, A.; Ellis, K. V.; Harder, K.; Harper, S.; Linacre, J.; Manolopoulos, K.; Newbold, D. M.; Olaiya, E.; Petyt, D.; Reis, T.; Sahasransu, A. R.; Salvi, G.; Schuh, T.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Whalen, K. C.; Williams, T.; Andreou, I.; Bainbridge, R.; Bloch, P.; Brown, C. E.; Buchmuller, O.; Cacchio, V.; Montoya, C. A. Carrillo; Chahal, G. S.; Colling, D.; Dancu, J. S.; Das, I.; Dauncey, P.; Davies, G.; Davies, J.; Della Negra, M.; Fayer, S.; Fedi, G.; Hall, G.; Hassanshahi, M. H.; Howard, A.; Iles, G.; Knight, C. R.; Langford, J.; Holgado, J. Leon; Lyons, L.; Magnan, A. -M.; Mallios, S.; Mieskolainen, M.; Nash, J.; Pesaresi, M.; Pradeep, P. B.; Radburn-Smith, B. C.; Richards, A.; Rose, A.; Savva, K.; Seez, C.; Shukla, R.; Tapper, A.; Uchida, K.; Uttley, G. P.; Vage, L. H.; Virdee, T.; Vojinovic, M.; Wardle, N.; Winterbottom, D.; Coldham, K.; Cole, J. E.; Khan, A.; Kyberd, P.; Reid, I. D.; Abdullin, S.; Brinkerhoff, A.; Collins, E.; Darwish, M. R.; Dittmann, J.; Hatakeyama, K.; Hiltbrand, J.; McMaster, B.; Samudio, J.; Sawant, S.; Sutantawibul, C.; Wilson, J.; Bartek, R.; Dominguez, A.; Escamilla, C. Huerta; Simsek, A. E.; Uniyal, R.; Hernandez, A. M. Vargas; Bam, B.; Perraguin, A. Buchot; Chudasama, R.; Cooper, S. I.; Crovella, C.; Gleyzer, S. V.; Pearson, E.; Perez, C. U.; Rumerio, P.; Usai, E.; Yi, R.; Akpinar, A.; Cosby, C.; De Castro, G.; Demiragli, Z.; Erice, C.; Fangmeier, C.; Madrazo, C. Fernandez; Fontanesi, E.; Gastler, D.; Golf, F.; Jeon, S.; O'cain, J.; Reed, I.; Rohlf, J.; Salyer, K.; Sperka, D.; Spitzbart, D.; Suarez, I.; Tsatsos, A.; Zecchinelli, A. G.; Benelli, G.; Cutts, D.; Gouskos, L.; Hadley, M.; Heintz, U.; Hogan, J. M.; Kwon, T.; Landsberg, G.; Lau, K. T.; Li, D.; Luo, J.; Mondal, S.; Pervan, N.; Russell, T.; Sagir, S.; Simpson, F.; Stamenkovic, M.; Venkatasubramanian, N.; Yan, X.; Abbott, S.; Brainerd, C.; Breedon, R.; Cai, H.; Sanchez, M. Calderon De La Barca; Chertok, M.; Citron, M.; Conway, J.; Cox, P. T.; Erbacher, R.; Jensen, F.; Kukral, O.; Mocellin, G.; Mulhearn, M.; Ostrom, S.; Wei, W.; Yao, Y.; Yoo, S.; Zhang, F.; Bachtis, M.; Cousins, R.; Datta, A.; Avila, G. Flores; Hauser, J.; Ignatenko, M.; Iqbal, M. A.; Lam, T.; Manca, E.; Del Prado, A. Nunez; Saltzberg, D.; Valuev, V.; Clare, R.; Gary, J. W.; Gordon, M.; Hanson, G.; Si, W.; Aportela, A.; Arora, A.; Branson, J. G.; Cittolin, S.; Cooperstein, S.; Diaz, D.; Duarte, J.; Giannini, L.; Gu, Y.; Guiang, J.; Kansal, R.; Krutelyov, V.; Lee, R.; Letts, J.; Masciovecchio, M.; Mokhtar, F.; Mukherjee, S.; Pieri, M.; Quinnan, M.; Narayanan, B. V. Sathia; Sharma, V.; Tadel, M.; Vourliotis, E.; Wurthwein, F.; Xiang, Y.; Yagil, A.; Barzdukas, A.; Brennan, L.; Campagnari, C.; Downham, K.; Grieco, C.; Incandela, J.; Kim, J.; Li, A. J.; Masterson, P.; Mei, H.; Richman, J.; Santpur, S. N.; Sarica, U.; Schmitz, R.; Setti, F.; Sheplock, J.; Stuart, D.; Vami, T. A.; Wang, S.; Zhang, D.; Bhattacharya, S.; Bornheim, A.; Cerri, O.; Latorre, A.; Mao, J.; Newman, H. B.; Gutierrez, G. Reales; Spiropulu, M.; Vlimant, J. R.; Wang, C.; Xie, S.; Zhu, R. Y.; Alison, J.; An, S.; Bryant, P.; Cremonesi, M.; Dutta, V.; Ferguson, T.; Espinosa, T. A. Gomez; Harilal, A.; Tharayil, A. Kallil; Liu, C.; Mudholkar, T.; Murthy, S.; Palit, P.; Park, K.; Paulini, M.; Roberts, A.; Sanchez, A.; Terrill, W.; Cumalat, J. P.; Ford, W. T.; Hart, A.; Hassani, A.; Karathanasis, G.; Manganelli, N.; Pearkes, J.; Savard, C.; Schonbeck, N.; Stenson, K.; Ulmer, K. A.; Wagner, S. R.; Zipper, N.; Zuolo, D.; Alexander, J.; Bright-Thonney, S.; Chen, X.; Cranshaw, D. J.; Fan, J.; Fan, X.; Hogan, S.; Kotamnives, P.; Monroy, J.; Oshiro, M.; Patterson, J. R.; Reid, M.; Ryd, A.; Thom, J.; Wittich, P.; Zou, R.; Albrow, M.; Alyari, M.; Amram, O.; Apollinari, G.; Apresyan, A.; Bauerdick, L. A. T.; Berry, D.; Berryhill, J.; Bhat, P. C.; Burkett, K.; Butler, J. N.; Canepa, A.; Cerati, G. B.; Cheung, H. W. K.; Chlebana, F.; Cummings, G.; Dickinson, J.; Dutta, I.; Elvira, V. D.; Feng, Y.; Freeman, J.; Gandrakota, A.; Gecse, Z.; Gray, L.; Green, D.; Grummer, A.; Grunendahl, S.; Guerrero, D.; Gutsche, O.; Harris, R. M.; Heller, R.; Herwig, T. C.; Hirschauer, J.; Jayatilaka, B.; Jindariani, S.; Johnson, M.; Joshi, U.; Klijnsma, T.; Klima, B.; Kwok, K. H. M.; Lammel, S.; Lincoln, D.; Lipton, R.; Liu, T.; Madrid, C.; Maeshima, K.; Mantilla, C.; Mason, D.; McBride, P.; Merkel, P.; Mrenna, S.; Nahn, S.; Ngadiuba, J.; Noonan, D.; Norberg, S.; Papadimitriou, V.; Pastika, N.; Pedro, K.; Pena, C.; Ravera, F.; Hall, A. Reinsvold; Ristori, L.; Safdari, M.; Sexton-Kennedy, E.; Smith, N.; Soha, A.; Spiegel, L.; Stoynev, S.; Strait, J.; Taylor, L.; Tkaczyk, S.; Tran, N. V.; Uplegger, L.; Vaandering, E. W.; Zoi, I.; Aruta, C.; Avery, P.; Bourilkov, D.; Chang, P.; Cherepanov, V.; Field, R. D.; Koenig, E.; Kolosova, M.; Konigsberg, J.; Korytov, A.; Matchev, K.; Menendez, N.; Mitselmakher, G.; Mohrman, K.; Madhu, A. Muthirakalayil; Rawal, N.; Rosenzweig, S.; Takahashi, Y.; Wang, J.; Adams, T.; Al Kadhim, A.; Askew, A.; Bower, N.; Hagopian, V.; Hashmi, R.; Kim, R. S.; Kim, S.; Kolberg, T.; Martinez, G.; Prosper, H.; Prova, P. R.; Wulansatiti, M.; Yohay, R.; Zhang, J.; Alsufyani, B.; Baarmand, M. M.; Butalla, S.; Das, S.; Elkafrawy, T.; Hohlmann, M.; Yanes, E.; Adams, M. R.; Baty, A.; Bennett, C.; Cavanaugh, R.; Franco, R. Escobar; Evdokimov, O.; Gerber, C. E.; Hawksworth, M.; Hingrajiya, A.; Hofman, D. J.; Lee, J. H.; Lemos, D. S.; Merrit, A. H.; Mills, C.; Nanda, S.; Oh, G.; Ozek, B.; Pilipovic, D.; Pradhan, R.; Prifti, E.; Roy, T.; Rudrabhatla, S.; Tonjes, M. B.; Varelas, N.; Wadud, M. A.; Ye, Z.; Yoo, J.; Alhusseini, M.; Blend, D.; Dilsiz, K.; Emediato, L.; Karaman, G.; Koseyan, O. K.; Merlo, J. -P.; Mestvirishvili, A.; Neogi, O.; Ogul, H.; Onel, Y.; Penzo, A.; Snyder, C.; Tiras, E.; Blumenfeld, B.; Corcodilos, L.; Davis, J.; Gritsan, A. V.; Kang, L.; Kyriacou, S.; Maksimovic, P.; Roguljic, M.; Roskes, J.; Sekhar, S.; Swartz, M.; Abreu, A.; Alcerro, L. F. Alcerro; Anguiano, J.; Escatel, S. Arteaga; Baringer, P.; Bean, A.; Flowers, Z.; Grove, D.; King, J.; Krintiras, G.; Lazarovits, M.; Le Mahieu, C.; Marquez, J.; Murray, M.; Nickel, M.; Pitt, M.; Popescu, S.; Rogan, C.; Royon, C.; Salvatico, R.; Sanders, S.; Smith, C.; Wilson, G.; Allmond, B.; Gurunadha, R. Gujju; Ivanov, A.; Kaadze, K.; Maravin, Y.; Natoli, J.; Roy, D.; Sorrentino, G.; Baden, A.; Belloni, A.; Bistany-riebman, J.; Chen, Y. M.; Eno, S. C.; Hadley, N. J.; Jabeen, S.; Kellogg, R. G.; Koeth, T.; Kronheim, B.; Lai, Y.; Lascio, S.; Mignerey, A. C.; Nabili, S.; Palmer, C.; Papageorgakis, C.; Paranjpe, M. M.; Popova, E.; Shevelev, A.; Wang, L.; Bendavid, J.; Cali, I. A.; Chou, P. C.; D'Alfonso, M.; Eysermans, J.; Freer, C.; Gomez-Ceballos, G.; Goncharov, M.; Grosso, G.; Harris, P.; Hoang, D.; Kovalskyi, D.; Krupa, J.; Lavezzo, L.; Lee, Y. -J.; Long, K.; Mcginn, C.; Novak, A.; Paus, C.; Roland, C.; Roland, G.; Rothman, S.; Stephans, G. S. F.; Wang, Z.; Wyslouch, B.; Yang, T. J.; Crossman, B.; Joshi, B. M.; Kapsiak, C.; Krohn, M.; Mahon, D.; Mans, J.; Marzocchi, B.; Revering, M.; Rusack, R.; Saradhy, R.; Strobbe, N.; Bloom, K.; Claes, D. R.; Haza, G.; Hossain, J.; Joo, C.; Kravchenko, I.; Siado, J. E.; Tabb, W.; Vagnerini, A.; Wightman, A.; Yan, F.; Yu, D.; Bandyopadhyay, H.; Hay, L.; Hsia, H. W.; Iashvili, I.; Kalogeropoulos, A.; Kharchilava, A.; Morris, M.; Nguyen, D.; Pekkanen, J.; Rappoccio, S.; Sfar, H. 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Demiroglu, Zuhal Seyma/A-5168-2016; Uslan, Ebru/ACZ-1264-2022; Hall-Wilton, Richard/U-6918-2019; Dozen, Candan/IQS-4597-2023; Sacchi, Roberto/AGS-7202-2022; Padula, Sandra/AAE-4304-2020; Pellecchia, Antonello/KZV-0289-2024; Paoletti, Simone/R-2295-2016; de la Cruz, Begona/K-7552-2014; Escobar, Juan/H-9617-2017; Wittich, Peter/HOH-5761-2023; KARA, Ozgun/MCY-5689-2025; Gregores, Eduardo/F-8702-2012; Della Ricca, Giuseppe/B-6826-2013; Palencia Cortezon, Jose Enrique/F-1059-2017; Waltenberger, Wolfgang/H-9330-2018; Hoh, Siewyan/AAM-9562-2021; Barria, Patrizia/AAT-3894-2020; Polatoz, Ayse/AAF-6722-2021; Rovelli, Tiziano/K-4432-2015; Konecki, Marcin/G-4164-2015; Hoorani, Hafeez/D-1791-2013; Ceccarelli, Rudy/JTU-5218-2023; Mignerey, Alice/D-6623-2011; Wulz, Claudia-Elisabeth/H-5657-2011; Lee, Lawrence/AAU-6790-2021; Hobson, Peter/C-8919-2016; Markina, Anastasia/E-3390-2012; Khakzad, Mohsen/ABB-1945-2021; chen, ying/HHS-8254-2022; Gerosa, Raffaele/AGL-6079-2022; KHAN, Masood/AAA-7384-2020; De La Cruz Burelo, Eduard/Q-6021-2019; Cerri, Olmo/Z-3579-2019; Paganoni, Marco/A-4235-2016; Seidita, Roberto/AGX-6803-2022; Pastrone, Nadia/JRZ-0528-2023; Fabozzi, Francesco/T-6468-2019; BARRILLON, Stephanie/ABA-6873-2021; Bunichev, Viacheslav/E-2285-2012; Vega, Johnny/JZT-3699-2024; Ferreira, Maria/G-6561-2012; Sculac, Toni/AAE-4141-2019; li, jincheng/GQP-6856-2022; Calvo Alamillo, Enrique/L-1203-2014; Bernardes, Cesar Augusto/D-2408-2015; Orimoto, Toyoko/D-4759-2016; Grynyov, Borys/D-1714-2010; Benussi, Luigi/O-9684-2014; Voevodina, Elena/G-7314-2016; Morovic, Srecko/T-9019-2019; Salvatico, Riccardo/JAO-1069-2023; Arcidiacono, Roberta/ABF-3918-2020; Fanò, Livio/K-2460-2015; Rabady, Dinyar/GSN-9210-2022; Wimpenny, Stephen/K-8848-2013; Cavallari, Francesca/AAE-8571-2019; Pinheiro, Joao/LMN-5088-2024; Safronov, Grigory/F-8494-2017; Focardi, Ettore/E-7376-2012; Bossini, Edoardo/AAA-4972-2020; Klyukhin, Vyacheslav/D-6850-2012; Vai, Ilaria/AAT-5836-2020; Yuldashev, Bekhzod/AAA-5876-2021; Calderon, Alicia/K-3658-2014; Alves, Gilvan/C-4007-2013; 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