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Lee, Hyun-Wook (이현욱)

Department
School of Energy and Chemical Engineering(에너지및화학공학부)
Research Interests
Energy storage, secondary batteries, transmission electron microscopy, real time analysis
Lab
Energy Storage and Electron Microscopy Laboratory
Website
https://sites.google.com/site/hyunwookleenano/
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Issue DateTitleAuthor(s)TypeViewAltmetrics
2019-04Tailored Assembly of Molecular Water Oxidation Catalysts onto Photoelectrodes for Artificial PhotosynthesisBae, Sanghyun; Jang, Ji-Eun; Lee, Hyun-Wook, et alARTICLE77 Tailored Assembly of Molecular Water Oxidation Catalysts onto Photoelectrodes for Artificial Photosynthesis
2019-03Nanocrevasse-Rich Carbon Fibers for Stable Lithium and Sodium Metal AnodesGo, Wooseok; Kim, Min-Ho; Park, Jehee, et alARTICLE115 Nanocrevasse-Rich Carbon Fibers for Stable Lithium and Sodium Metal Anodes
2019-01Interface Engineering of Hematite with Nacre-like Catalytic Multilayers for Solar Water OxidationChoi, Yeongkyu; Jeon, Dasom; Choi, Yuri, et alARTICLE151 Interface Engineering of Hematite with Nacre-like Catalytic Multilayers for Solar Water Oxidation
2019-01Robust pitch on silicon nanolayer-embedded graphite for suppressing undesirable volume expansionChoi, Seong-Hyeon; Nam, Gyutae; Chae, Sujong, et alARTICLE130 Robust pitch on silicon nanolayer-embedded graphite for suppressing undesirable volume expansion
2018-10Realizing High-Performance Li-Polysulfide Full Cells by using a Lithium Bis(trifluoromethanesulfonyl)imide Salt Electrolyte for Stable CyclabilityAhad, Syed Abdul; Pitchai, Ragupathy; Beyene, Anteneh Marelign, et alARTICLE321 Realizing High-Performance Li-Polysulfide Full Cells by using a Lithium Bis(trifluoromethanesulfonyl)imide Salt Electrolyte for Stable Cyclability
2018-10Promoting Oxygen Reduction Reaction Activity of Fe-N/C Electrocatalysts by Silica-Coating-Mediated Synthesis for Anion-Exchange Membrane Fuel CellsWoo, Jinwoo; Yang, Seung Yong; Sa, Young Jin, et alARTICLE433 Promoting Oxygen Reduction Reaction Activity of Fe-N/C Electrocatalysts by Silica-Coating-Mediated Synthesis for Anion-Exchange Membrane Fuel Cells
2018-09Diffusion controlled multilayer electrocatalysts via graphene oxide nanosheets of varying sizesGu, Minsu; Choi, Jaewon; Lee, Taemin, et alARTICLE116 Diffusion controlled multilayer electrocatalysts via graphene oxide nanosheets of varying sizes
2018-08Lithium Silicide Surface Enrichment: A Solution to Lithium Metal BatteryTang, Wei; Yin, Xuesong; Kang, Sujin, et alARTICLE210 Lithium Silicide Surface Enrichment: A Solution to Lithium Metal Battery
2018-08Enhanced mechanical properties of polymer nanocomposites using dopamine-modified polymers at nanoparticle surfaces in very low molecular weight polymersKwon, Na Kyung; Kim, Hyunhong; Han, Im Kyung, et alARTICLE325 Enhanced mechanical properties of polymer nanocomposites using dopamine-modified polymers at nanoparticle surfaces in very low molecular weight polymers
2018-08Engineering the Electrochemical Temperature Coefficient for Efficient Low-Grade Heat HarvestingGao, Caitian; Yin, Yuling; Zheng, Lu, et alARTICLE317 Engineering the Electrochemical Temperature Coefficient for Efficient Low-Grade Heat Harvesting
2018-07Impact of Textural Properties of Mesoporous Porphyrinic Carbon Electrocatalysts on Oxygen Reduction Reaction ActivityWoo, Jinwoo; Sa, Young Jin; Kim, Jae Hyung, et alARTICLE130 Impact of Textural Properties of Mesoporous Porphyrinic Carbon Electrocatalysts on Oxygen Reduction Reaction Activity
2018-07Coordination Polymers for High-Capacity Li-Ion Batteries: Metal-Dependent Solid-State ReversibilityLee, Hyun Ho; Lee, Jae Bin; Park, Yuwon, et alARTICLE168 Coordination Polymers for High-Capacity Li-Ion Batteries: Metal-Dependent Solid-State Reversibility
2018-05Fluoroethylene Carbonate-Based Electrolyte with 1 M Sodium Bis(fluorosulfonyl)imide Enables High-Performance Sodium Metal ElectrodesLee, Yongwon; Lee, Jaegi; Lee, Jeongmin, et alARTICLE134 Fluoroethylene Carbonate-Based Electrolyte with 1 M Sodium Bis(fluorosulfonyl)imide Enables High-Performance Sodium Metal Electrodes
2018-01Suppressing Polysulfide Dissolution via Cohesive Forces by Interwoven Carbon Nanofibers for High-Areal-Capacity Lithium-Sulfur BatteriesYun, Jong Hyuk; Kim, Joo-Hyung; Kim, Do Kyung, et alARTICLE192 Suppressing Polysulfide Dissolution via Cohesive Forces by Interwoven Carbon Nanofibers for High-Areal-Capacity Lithium-Sulfur Batteries
2017-12Practical considerations of Si-based anodes for lithium-ion battery applicationsRyu, Jaegoen; Hong, Dongki; Lee, Hyun-Wook, et alARTICLE361 Practical considerations of Si-based anodes for lithium-ion battery applications
2017-11Encapsulation of Lithium Vanadium Phosphate in Reduced Graphene Oxide for a Lithium-ion Battery Cathode with Stable Elevated Temperature PerformanceLim, Check Hai; Jung, Young Hwa; Yeom, Su Jeong, et alARTICLE487 Encapsulation of Lithium Vanadium Phosphate in Reduced Graphene Oxide for a Lithium-ion Battery Cathode with Stable Elevated Temperature Performance
2017-09A Flexible Glass Fiber Based Freestanding Composite Electrode for High-Performance Lithium Polysulfide BatteriesRagupathy, P.; Ahad, Syed Abdul; Kumar, P.Ramesh, et alARTICLE76 A Flexible Glass Fiber Based Freestanding Composite Electrode for High-Performance Lithium Polysulfide Batteries
2017-08Self-adaptive Si/reduced graphene oxide scrolls for high-performance Li-ion battery anodesYu, Yongli; Li, Gang; Zhou, Shuai, et alARTICLE346 Self-adaptive Si/reduced graphene oxide scrolls for high-performance Li-ion battery anodes
2017-08Unveiling the synergistic effect of polysulfide additive and MnO2 hollow spheres in evolving a stable cyclic performance in Li-S batteriesAhad, Syed Abdul; Ragupathy, P; Ryu, Soojy, et alARTICLE311 Unveiling the synergistic effect of polysulfide additive and MnO2 hollow spheres in evolving a stable cyclic performance in Li-S batteries
2017-07In Situ Observation and Electrochemical Study of Encapsulated Sulfur Nanoparticles by MoS2 FlakesTang, Wei; Chen, Zhongxin; Tian, Bingbing, et alARTICLE407 In Situ Observation and Electrochemical Study of Encapsulated Sulfur Nanoparticles by MoS2 Flakes

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