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Academic Journal

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102

  • Atomic Layer Deposited Pt Nanoparticles on Functionalized MoS2 as Highly Sensitive H2 Sensor
    62
    Atomic Layer Deposited Pt Nanoparticles on Functionalized MoS2 as Highly Sensitive H2 Sensor
    Applied Surface Science, Vol. 571, 151256 (2022/01) (SCI(top 3%), IF: 6.7)(산업부(나노융합), 과기부(신진) 사업 지원) (Collaboration w/ Yonsei univ. (Korea))
    S. Lee Y. Kang J. Lee J. Kim J. W. Shin S. Sim S. Kye J. Kim* J. An*(*corresponding author)
  • Phase-Gradient Atomic Layer Deposition of TiO2 Thin Films by Plasma-Induced Local Crystallization
    61
    Phase-Gradient Atomic Layer Deposition of TiO2 Thin Films by Plasma-Induced Local Crystallization
    Ceramics International, Vol.47, 28770-28777 (2021/10) (SCI(top 10%), IF: 4.527) (산업부(나노융합, 차세대반도체), 과기부(신진) 사업 지원)
    D. Go J. Lee J.W. Shin S. Lee W. Kang J. H. Han J. An*(*corresponding author)
  • The Effect of the Carbon Felt Surface Modification by Plasma Treatment on the Performance of Quinone Based Organic Redox Flow Battery
    60
    The Effect of the Carbon Felt Surface Modification by Plasma Treatment on the Performance of Quinone Based Organic Redox Flow Battery
    Int. J. Energy Res. , Vol. 45, 17878-17887 (2021/06) (SCI(top 2%), IF: 5.164). (산업부(나노융합) 사업 지원)(*corresponding authors)
    A. Permatasari J. W. Shin J. An* Y. Kwon*
  • ALD CeO2-Coated Pt Anode for Thin-Film Solid Oxide Fuel Cells
    59
    ALD CeO2-Coated Pt Anode for Thin-Film Solid Oxide Fuel Cells
    Int. J. Hydrogen Energy, Vol. 46, 20087-20092 (2021/06) (SCI(top 25%), IF: 5.816)(*corresponding author)(과기부(신진), 산업부(고신뢰성) 사업 지원)(Collaboration w/ Dankook univ. (Korea))
    J. W. Shin S. Oh S. Lee D. Go J. Park H. J. Kim B. C. Yang G. Y. Cho* J. An*
  • Ultra-Low Loading Ruthenium Catalysts by Plasma Enhanced Atomic Layer Deposition for Solid Oxide Fuel Cell
    58
    Ultra-Low Loading Ruthenium Catalysts by Plasma Enhanced Atomic Layer Deposition for Solid Oxide Fuel Cell
    ACS Catalysis, Vol.11, pp. 3523-3529 (2021/03)(SCI(top 10%), IF: 13.084)(과기부(신진,한일), 전남(튜닝) 사업 지원 ) [ "서울과기대 안지환 교수팀, 최신 원자층 공정 활용한 천연가스 연료전지 고성능 촉매 개발 "] https://www.donga.com/news/Society/article/all/20210315/105881747/1 https://news.joins.com/article/24012138 https://www.dhnews.co.kr/news/articleView.html?idxno=138060 ]
    S. Kye H. J. Kim D. Go B. C. Yang J. W. Shin S. Lee J. An*(*corresponding author)
  • Thermal Conductivity of Plasma -Enhanced Atomic Layer Deposited Hafnium Zirconium Oxide Dielectric Thin Films
    57
    Thermal Conductivity of Plasma -Enhanced Atomic Layer Deposited Hafnium Zirconium Oxide Dielectric Thin Films
    Journal of the European Ceramic Society, Vol. 41, pp.3397-3403 (2021.06)(SCI(top 2%), IF: 5.302)(산업부(나노융합) 지원)(*corresponding authors)(Collaboration w/ SKKU (Korea))
    J. Kim S. Lee Y. Song S. Choi J. An* J. Cho*
  • Ru/Samaria-doped Ceria Gradient Cermet Anode for Direct Methane Solid Oxide Fuel Cell
    56
    Ru/Samaria-doped Ceria Gradient Cermet Anode for Direct Methane Solid Oxide Fuel Cell
    Applied Surface Science, Vol 538, 148105 (2021.06) (SCI(top 3%), IF: 6.182)(교내 미래핵심과제 지원)(*corresponding author)(Collaboration w/ Hanyang univ. (Korea))
    H. J. Kim M. J. Kil J. Lee B. C. Yang D. Go Y. Lim Y. B. Kim J. An*
  • Doping-Level Control of Atomic Layer Deposited YSZ Surface Layer on Platinum Catalyst
    55
    Doping-Level Control of Atomic Layer Deposited YSZ Surface Layer on Platinum Catalyst
    Ceramics International, Vol. 47, pp. 11372-11378 (2020)(SCI(top 10%), IF: 4.527)(과기부(신진,한일),산업부(고신뢰성), 전남(튜닝) 사업 지원)(*corresponding authors)(Collaboration w/ Dankook univ. (Korea))
    B.C. Yang S. Kye D. Go S. Oh H. J. Kim J. W. Shin G. Y. Cho* J. An*
  • Atomic layer deposited YSZ overlayer on Ru for direct methane utilization in solid oxide fuel cell
    54
    Atomic layer deposited YSZ overlayer on Ru for direct methane utilization in solid oxide fuel cell
    Ceramics International, Vol.46, pp.1705-1710, (2019.09) (SCI(top 10%), IF: 3.057) (교내 SCI 과제 지원
    D. Go B. C. Yang J. W. Shin S. Lee S. H. Kye S. Kim J. An*(*corresponding author)
  • Review on Process-Microstructure-Performance Relationship in ALD-Engineered SOFCs
    53
    Review on Process-Microstructure-Performance Relationship in ALD-Engineered SOFCs
    J. Phys. Energy, Vol.1, p. 042002 (2019/08) (과기부(신진), 산업부(나노융합), 산업부(고신뢰성) 지원) (SCI(top 25%), IF:5.9)
    J. W. Shin D. Go S. H. Kye S. Lee J. An* (*corresponding author)