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  • Lee, Chan-Woo

    UST full-time faculty Platform Technology Laboratory

    • +82-42-860-3766
    • cwandtj@kier.re.kr

    Course

    UST Student,Academic Cooperation Course

    Research Field

    Computational Materials Science / Materials Data Science

    Research Field

    Computational Materials Science / Materials Data Science
    close
    Research Project
    - Development of novel Electrode Materials using Materials Big Data Platform
    - Efficient Performance Evaluation Tool of Compuational Materials Science Based Web Platform for Electrode Nanomaterials
    Paper Publication
    - Tailoring the Ratio of A-Site Cations in Pr1?xNdxBaCo1.6Fe0.4O5+δ to Promote the Higher Oxygen Reduction Reaction Activity for Low-Temperature Solid Oxide Fuel Cells, Chemistry of Materials 32 (9), 3841-3849
    - Conductivity Enhancement of Nickel Oxide by Copper Cation Codoping for Hybrid Organic-Inorganic Light-Emitting Diodes, ACS Photonics 5 (8), 3389-3398 (2020)
    - Graphene Liquid Cell Electron Microscopy of Initial Lithiation in Co3O4 Nanoparticles, ACS omega 4 (4), 6784-6788 (2019)
    - Precisely geometry controlled microsupercapacitors for ultrahigh areal capacitance, volumetric capacitance, and energy density, Chemistry of Materials 30 (12), 3979-3990 (2018)
    - Dramatic enhancement of long-term stability of erbia-stabilized bismuth oxides via quadrivalent Hf doping, Chemistry of Materials 29 (24), 10289-10293 (2018)
    - Interplay between Cation and Charge Ordering in La1/3Sr2/3FeO3 Superlattices, Advanced Electronic Materials 2 (6), 1500372 (2016)
    - Continuous growth of hexagonal graphene and boron nitride in-plane heterostructures by atmospheric pressure chemical vapor deposition, Acs Nano 7 (11), 10129-10138 (2015)
    - Stabilization Mechanisms of LaFeO3 (010) Surfaces Determined with First Principles Calculations, Journal of the American Ceramic Society 94 (6), 1931-1939 (2011)
    - Stoichiometry of the LaFeO 3 (010) surface determined from first-principles and thermodynamic calculations, Physical Review B 83 (11), 115418 (2011)
  • Yim, Sung-Dae

    UST full-time faculty Fuel Cell Laboratory

    • +82-42-860-3548
    • jimmyim@kier.re.kr

    Course

    UST Student,Academic Cooperation Course,Training Student

    Research Field

    Catalytic Electrodes for Polymer Electrolyte Membrane Fuel Cells

    Research Field

    Catalytic Electrodes for Polymer Electrolyte Membrane Fuel Cells
    close
    Research Project
    - Design and control of MEA structure for high power density and durability for PEMFCs
    - Development of Fe-based low Pt catalyst and electrode for hydrogen fuel cell
    - Development of Membrane Electrode Assembly (MEA) Durability Improvement Technology for Medium and Large Commercial Vehicles
    Paper Publication
    - Current understanding of catalyst/ionomer interfacial structure and phenomena affecting the oxygen reduction reaction in cathode catalyst layers of proton exchange membrane fuel cells, Current Opinion in Electrochemistry 21 (2020) 289.
    - Electrochemical behavior of cathode catalyst layers prepared with propylene glycol-based Nafion ionomer dispersion for PEMFC, Korean Chemical Engineering Research 57 (2019) 512.
    - Rambutan-like CNT-Al2O3 Scaffolds for High-Performance Cathode Catalyst Layers of Polymer Electrolyte Fuel Cells, Journal of power sources 379 (2018) 288.
    - Variations in performance-degradation behavior of Pt/CNF and Pt/C MEAs for the same degree of carbon corrosion, Electrochimica Acta 260 (2018) 674.
    - A rejuvenation process to enhance the durability of low Pt loaded polymer electrolyte membrane fuel cells, Journal of Power Sources 396 (2018) 345.
    - Highly Durable Supportless Pt Hollow Spheres Designed for Enhanced Oxygen Transport in Cathode, ACS Appled materials & interfaces 8 (2016) 27730.
    - Self­Supported Mesostructured Pt­Based Bimetallic Nanospheres Containing an Intermetallic Phase as Ultrastable Oxygen Reduction Electrocatalysts, Small 12 (2016) 5347.
    - A Microelectrode study of interfacial reactions at the platinum-alkaline polymer interface, Journal of The Electrochemical Society 162 (2015) F499.
    - Designing an ultrathin silica layer for highly durable carbon nanofibers as the carbon support in polymer electrolyte fuel cells, Nanoscale 6 (2014) 12111.
    - Highly durable fuel cell electrodes based on ionomers dispersed in glycero, Physical Chemistry Chemical Physics 16 (2014) 5927.
  • Lim Tak Hyoung

    UST full-time faculty High Temp. Energy Conversion

    • 042-860-3608/010-7667-7971
    • ddak@kier.re.kr

    Course

    UST Student

    Research Field

    Chemical reaction engineering, SOFC, SOEC, coelectrolysis stack system operation evaluation, electrochemical integration process, SOFC/SOEC KS certification and standard related research, CCUS with high temp. coelectrolysis

    Research Field

    Chemical reaction engineering, SOFC, SOEC, coelectrolysis stack system operation evaluation, electrochemical integration process, SOFC/SOEC KS certification and standard related research, CCUS with high temp. coelectrolysis
    close
    Research Project
    * 20kW SOFC 시스템용 일체형 개질기 개발(책임자) 2025.12 종료
    * 분산형 연료전지 시스템 신뢰성 평가기술 개발(책임자) 2026.03 종료
    * SOFC 용 터보블로워 요구사양 분석 및 실증 평가(책임자) 2023.09 종료
    * 암모니아 기반 SOFC 스택 모듈 개발(책임자) 2025.03 종료
    * 5kW급 상용 고효율 FC-엔진 하이브리드 시스템 설계 패키지 및 시제품 개발(책임자) 2020.12 완료
    * 고체산화물연료전지(SOFC) 발전시스템 성능평가 기반구축(책임자) 2018.04 완료
    * 합성연료 제조용 고온 공전해 스택 모듈 원천기술 개발(책임자) 2021.10 완료
    Paper Publication
    https://www.scopus.com/authid/detail.uri?authorId=57202840846


    SCI

    Microstructure tailoring of solid oxide electrolysis cell air electrode to boost performance and long-term durability
    Chemical Engineering Energy (410, 128318) 2021

    Scaling up syngas production with controllable H2/CO ratio in a highly efficient, compact, and durable solid oxide coelectrolysis cell unit-bundle
    Applied Energy (257, 114036) 2020

    Thermally self-sustaining operation of tubular solid oxide fuel cells integrated with a hybrid partial oxidation reformer using propane
    Energy Conversion and Management
    (189, 132-142) 2019

    Production of syngas from H2O/CO2 by high-pressure coelectrolysis in tubular solid oxide cells
    Applied Energy (212, 7597706) 2018

    Hybrid-solid oxide electrolysis cell: A new strategy for efficient hydrogen production
    Nano energy (44,121-126) 2018
  • Jang Bo-yun

    Academic advisor for a student researcher Energy Conversion & Storage Materials Laboratory

    • +82-42-860-3476
    • byjang@kier.re.kr

    Course

    Academic Cooperation Course

    Research Field

    Next generation-secondary battery materials for electrical vehicles

    Research Field

    Next generation-secondary battery materials for electrical vehicles
    close
    Research Project
    1) Development of 3D All-Solid-State Rechargeable Battery System for Fast Charge (1min) and Long Range (600km) EV
    2) Development of advanced innovation technology of all-solid-state secondary battery for xEV
    3) SiOx-carbon composites for 1,100 mAh/cc Li-ion battery's anode for EVs
    4) Development of highly integrated power source technology based on 3D additive manufacturing
    5) Nontoxic monodispersed silicon nanoparticles for bio-applications
    Paper Publication
    - Quantitative relationships between microstructures and J5electrochemical properties in Si core-SiOx shell nanoparticles for Li-ion battery anodes, Journal of Power Sources 329 (2016) 79 ~ 87
    - Stepwise carbon growth on Si/SiOx core-shell nanoparticles and its effects on the microstructures and electrochemical properties for high-performance lithium-ion battery’s anode, Electrochimica Acta 222 (2016) 535-542, Effects of phosphorous incorporation on the microstructure of Si nanoparticles as an anode material for lithium-ion battery, Thin Solid Films 587 (2015) 142-149
    - Silicon nanoparticles synthesized using double tube reactor and inductive coupled plasma
  • Jang Il-Chan

    Academic advisor for a student researcher Gwangju Bioenergy R&D Center

    • +82-62-717-2435
    • jic7421@kier.re.kr

    Course

    Academic Cooperation Course,Training Student

    Research Field

    Rechargeable battery, Battery degradation analysis

    Research Field

    Rechargeable battery, Battery degradation analysis
    close
    Research Project
    - Technology development for RFB materials/system design and biocoal/gas production
    - Manufacturing technology development on composite core materials and electrode with high energy density (7mAhcm2) for ceramic secondary batteries
    - Fundamental study for the development of Gwang-ju Bio/Energy Center
    Paper Publication
    - Surface coating layer on Li metal for increased cycle stability of Li-O2 batteries
    - LiFePO4 modified Li1.02(Co0.9Fe0.1)0.98PO4 cathodes with improved lithium storage propertie
    - Li depletion and the Rechargeability of Li-O2 batteries in Ether and Carbonate Electrolytes
  • Jung Kwangjin

    Academic advisor for a student researcher Hydrogen Research Department

    • 042-860-3241
    • kjjung@kier.re.kr

    Course

    Academic Cooperation Course

    Research Field

    - 수소 저장 기술

    - 수소 압축 기술

    - 수전해-수소저장-연료전지 연계 기술

    - 수전해 기술

    - 금속수소화물

    - 수소저장합금

    Research Field

    - 수소 저장 기술

    - 수소 압축 기술

    - 수전해-수소저장-연료전지 연계 기술

    - 수전해 기술

    - 금속수소화물

    - 수소저장합금
    close
    Research Project
    - 수소도시 타운하우스형 주거 모델 기술 개발

    - 해외 수소기반 대중교통 인프라 기술개발

    - 5kW급 수소연료전지 파워팩 적용 지게차 실증

    - 수소 저장 및 방출량 시험평가
    Paper Publication
    - (Article) K Jung et al., 금속수소화물 기반 수소 저장 및 압축 기술, 한국그린빌딩협의회지, 2021

    - (Patent) KS Kang et al., Cell Frame for Minimal Leak Current on Water Electrolysis Device, 2021

    - (Book) SU Jeong et al., 고밀도 수소 저장용 경금속 수소화물, 한국재료연구원, 2021

    - (Patent) CS Park et al., Metal hydrides based hydrogen storage device and hydrogen storage method using thereof, 2021

    - (Article) P Lee et al., Heat Transfer Characteristics and Hydrogen Storage Kinetics of Metal Hydride-Expended Graphite Composite, Transactions of the Korean Hydrogen and New Energy Society, 2020

    - (Article) CS Park et al., Development of hydrogen storage reactor using composite of metal hydride materials with ENG, International Journal of Hydrogen Energy, 2020

    - (Article) BH Park et al., 금속수소화물을 이용한 수소 저장, News and Information for Chemical Engineers, 2020

    - (Article) J Kim et al., Tritium Research and Development Status at KAERI, Fusion Science and Technology, 2020

    - (Article) J Han et al., Intermittent Operation Induced Deactivation Mechanism for HER of Ni-Zn-Fe Electrode for Alkaline Electrolysis, Transactions of the Korean Hydrogen and New Energy Society, 2020

    - (Article) J Chae et al., Effect of Electroplating Parameters on Oxygen Evolution Reaction Characteristics of Raney Ni-Zn-Fe Electrode, Transactions of the Korean Hydrogen and New Energy Society, 2020

    - (Article) K Jung et al., Applicability evaluation of a natural circulation loop to a uranium hydride bed for tritium accountability, Fusion Engineering and Design, 2019

    - (Article) K Jung et al., Tritium accountability of a uranium hydride bed using a calorimetry methodology, High Temperatures-High Pressures, 2019

    - (Article) K Jung et al., Physicochemical conditions for effective hydrogen isotope storage and delivery in a uranium bed, Journal of Radioanalytical and Nuclear Chemistry, 2018
  • Jung Doo-hwan

    UST full-time faculty Fuel Cell Laboratory

    • +82-42-860-3577
    • doohwan@kier.re.kr

    Course

    Post-doctoral Researcher,UST Student

    Research Field

    Carbon materials for fuel cell, energy and environmental system

    Research Field

    Carbon materials for fuel cell, energy and environmental system
    close
    Research Project
    - CNT reinforced carbon bipolar plate for Fuel cell
    - Developed carbon graphite material for coke based chemical and heat resistant self lubricating machine structure
    - Devolopment of a thin CNT reinforced carbon composite having designed special flow pattern with high mechanical, electical proterties and corrosion resistance
    - Manufacture of super mesoporous activated carbon electrode and module development to improve the performance of capacitive deionization device
    Paper Publication
    - Preparation and characterization of high-spinnability isotropic pitch from 1-methylnaphthalene-extracted low-rank coal by co-carbonization with petroleum residue, Seon Ho Lee, Song Mi Lee, Ui-su Im, Sang-Do Kim, Seong-Ho Yoon, Byung-rok Lee, Dong-Hyun Peck, Yong-Gun Shul, Doo-Hwan Jung, Carbon 155 (2019) 186-194/0008-6223
    - Controlling hierachical porous structures of rice-husk-derived carbons for improved capactive deionization perfprmance, Jiyoung Kim, Yilhoon Yi, Dong-Hyun Peck, Seong-Ho Yoon, Doo-Hwan Jung, Ho Seok Park, Environ. Sci.: Nano, 2019, 6, 916/2051-8153
    - Preparation of activated carbon from needle coke via two-stage steam activation process, Ui-Su Im, Jiyoung Kim, Seon Ho Lee, Song mi Lee, Byung-Rok Lee, Dong-Hyun Peck, Doo-Hwan Jung, Materials Letters 237 (2019) 22-25/0167-577X
    - Effects of ethanol in methanol fuel on the performance of membrane electrode assemblies for direct methanol fuel cells, Sae-Rom Yang, Sang-Kyung Kim, Doo-Hwan Jung, Taejin Kim, Han-Sung Kim, Dong-Hyun Peck, Journal of Industrial and Engineering Chemistry 66 (2018) 100-106/1226-086X
    - Improving the mechanical properties of a high density carbon block from mesocarbon microbeads according to oxidative stabilization, Ui-Su Im, Jiyoung Kim, Byung-Rok Lee, Dong-Hyun Peck, Doo-Hwan Jung, Scientific Reports volume 8, Article number: 11064 (2018)/2045-2322
    - Performance of a MEA using patterned membrane with a directly coated electrode by the bar-coating method in a direct methanol fuel cell, Saetbyeol Kang, Gyuna Bae, Sang-Kyung Kim, Doo-Hwan Jung, Yong-Gun Shul, Dong-Hyun Peck, international journal of hydrogen energy 43(2018) 11386-11396/0360-3199
    - A Strategy for Homogeneous Current Distribution in Direct Methanol Fuel Cells through Spatial Variation of Catalyst Loading, Sang-Min Park, Sang-Kyung Kim, Dong-Hyun Peck, and Doo-Hwan Jung, J. Electrochem. Sci. Technol., 2017, 8(4), 331-337/2093-8551
    - Enhanced activity and durability of the oxygen reduction catalysts supported on the surface expanded tubular-type carbon nanofiber, Jiyoung Kim, Ui-Su Im, Dong-Hyun Peck, Seong-Ho Yoon, Ho Seok Park, Doo-Hwan Jung, Applied Catalysis B: Environmental 217 (2017) 192-200//0926-3373
    - Effects of Two-stage Heat Treatment on Delayed Coke and Study of Their Surface Texture Characteristics, Ui-Su Im, Jiyoung Kim, Seon Ho Lee, Byung-Rok Lee, Dong-Hyun Peck, Doo-Hwan Jung, JOM December 2017, Volume 69, Issue 12, pp 2460-2466/1047-4838
    - Activating needle coke to develop anode catalyst for direct methanol fuel cell, Young Hun Park, Ui-Su Im, Byung-Rok Lee, Dong-Hyun Peck, Sang-Kyung Kim,
    Young Woo Rhee, Doo-Hwan Jung, Carbon Letters Vol. 20, 47-52/1976-4251
  • Chi-Young Jung

    UST full-time faculty Electric Power System Research Team

    • +82-63-581-1682
    • cyjung@kier.re.kr

    Course

    Post-doctoral Researcher,Academic Cooperation Course,Training Student

    Research Field

    PEMFC MEA and GDL Reliability Technology

    Research Field

    PEMFC MEA and GDL Reliability Technology
    close
    Research Project
    1) Development of high strength durability gas diffusion layer for medium and large sized commercial vehicles
    2) Development of PEFC MEA degradation model and evaluation of accelerated degradation test
    3) Development of MEA mass-production line parameters simplification based on decal-transfer technique
    Paper Publication
    1) Numerical analysis on transport properties of self-humidifying dual catalyst layer via 3-D reconstruction technique, Int. J. Hydrogen Energy, 2020
    2) Corrosion and alloy engineering in rational design of high current density electrodes for efficient water splitting, Advanced Energy Materials, 2020
    3) Harvesting electronic waste for the development of highly efficient eco-design electrodes for electrocatalytic water splitting, Advanced Energy Materials, 2018
    4) AA'-stacked trilayer hexagonal boron nitride membrane for proton exchange membrane fuel cells, ACS Nano, 2018
    5) Nitrogen-doped carbon supported platinum catalyst via direct soft nitriding for high-performance polymer electrolyte membrane fuel cell, Int. J. Hydrogen Energy, 2018
    6) Fabrication og highly effective self-humidifying membrane electrode assembly for proton exchange membrane fuel cells via electrostatic spray deposition, Electrochemistry Communications, 2018
  • Choi, Young-Woo

    Academic advisor for a student researcher Hydrogen Research Department

    • 063-581-1671
    • cozmoz67@kier.re.kr

    Course

    Post-doctoral Researcher,Academic Cooperation Course

    Research Field

    에너지 변환/저장(고분자연료전지, 흐름전지, 역전기투석 등) 시스템 및 전기화학적수처리(축전식 탈이온, 전기투석 등) 시스템용 이온교환막 개발

    Research Field

    에너지 변환/저장(고분자연료전지, 흐름전지, 역전기투석 등) 시스템 및 전기화학적수처리(축전식 탈이온, 전기투석 등) 시스템용 이온교환막 개발
    close
    Research Project
    1. 재생에너지 기반 알칼라인 수전해 장치 고안전성 확보를 위한 핵심기술 개발 및 실증

    2. 탄소중힙형 차세대 고분자 연료전지 및 수전해용 바이폴라막 제조 기술 개발

    3. 음이온교환 고분자막 기반 수전해/연료전지용 핵심 소재 개발
    Paper Publication
    1. Young-Woo Choi et. al., “A practical approach to measuring the ion-transport number of cation-exchange membranes: Effects of junction potential and analyte concentration”, J. Memb. Sci., Vol. 635, 119471 (2021)

    2. Young-Woo Choi et. al., "One-step fabrication and characterization of reinforced microcomposite membranes for polymer electrolyte membrane fuel cells". J. Memb. Sci., Vol. 563, 896-902 (2018)

    3. Young-Woo Choi et. al., "Thin Pore-Filled Ion Exchange Membranes for High Power Density in Reverse Electrodialysis: Effects of Structure on Resistance, Stability, and Ion Selectivity". ChemistrySelect, Vol. 2, 1974-1978 (2017)

    4. Young-Woo Choi et. al., "A novel amphoteric ion-exchange membrane prepared by the pore-filling technique for vanadium redox flow batteries". RSC Adv., Vol. 6, 63023-63029 (2016)

    5. Young-Woo Choi et. al., "High power density of reverse electrodialysis with pore-filling ion exchange membranes and a high-open-area spacer". J. Mater. Chem. A, Vol. 3, 16302-16306 (2015)

    6. Young-Woo Choi et. al., "Effect of number of cross-linkable sites on proton conducting, pore-filling membranes". J. Memb. Sci., Vol. 460, 178-184 (2014)

    7. Young-Woo Choi et. al., "Electrochemical and Mechanical Durability of Cast type of Membranes and a Reinforced Membrane Based on Sulfonated Poly(Arylene Ether Sulfone) for Polymer Electrolyte Fuel Cells". Chem. Lett., Vol. 43, 643-645 (2014)

    8. Young-Woo Choi et. al., "On-site crosslinked quaternized poly(vinyl alcohol) as ionomer binder for solid alkaline fuel cells". International Journal of Hydrogen Energy, Vol. 39, 16556-16561 (2014)

    9. Young-Woo Choi et. al., "Highly Crosslinkable and Proton-conducting Polyelectrolytes of Pore-filling Membranes for Proton Exchange Membrane Fuel Cells". Chem. Lett., Vol. 42, 998-1000 (2013)

    10. Young-Woo Choi et. al., "A study on sulfonated poly(arylene ether sulfone) membranes containing two different types of SiO2 for a high temperature and low-humidified polymer electrolyte fuel cell". Korean J. Chem. Eng., Vol. 30, 87-94 (2013)

    11. Young-Woo Choi et. al., "A highly durable cross-linked hydroxide ion conducting pore-filling membrane". J. Mater. Chem., Vol. 22, 13928-13931 (2012).
  • Han Sang Sup

    Academic advisor for a student researcher Clean Fuel Laboratory

    • +82-42-860-3378
    • sshan@kier.re.kr

    Course

    Post-doctoral Researcher

    Research Field

    Adsorbent and Adsorptive Separation/Purification Process Technology

    Research Field

    Adsorbent and Adsorptive Separation/Purification Process Technology
    close
    Research Project
    - Development of highly CO selective adsorbent and efficient vacuum-pressure swing adsorption process for CO separation/purification
    - Development of Kr & Xe selective adsorbent and efficient adsorptive process technology for Kr/Xe concentration/rejection
    Paper Publication
    - Sang Sup Han et al., Experiment and Modeling of Adsorption of CO from Blast Furnace Gas onto CuCl/Boehmite, Industrial & Engineering Chemistry Research, 59, 12176-12185 (2020)
    - Sang Sup Han et al., High CO Adsorption Capacity and CO Selectivity to CO2, N2, H2, and CH4 of CuCl/Bayerite Adsorbent, Microporous and Mesoporous Materials, 277, 142-148 (2019)
    - Sang Sup Han et al., Synthesis of CuCl/Boehmite Adsorbents that Exhibit High CO selectivity in CO/CO2 separation, J. of Hazardous Materials, 344, 857-864 (2018)