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102

  • Ultrathin Atomic Layer Deposited CeO2 Overlayer for High-Performance Fuel Cell Electrodes
    52
    Ultrathin Atomic Layer Deposited CeO2 Overlayer for High-Performance Fuel Cell Electrodes
    CS Appl. Mater. Interfaces, Vol. 11, pp. 46651-46657 (2019/11) (과기부(신진), 산업부(나노융합), 산업부(창의융합인력양성) 지원)(SCI(top 10%), IF: 8.456) (Supplementary Cover Article)(Collaboration w/ Stanford univ. (US))
    J. W. Shin S. Oh S. Lee J. G. Yu J. Park D. Go B. C. Yang H. J. Kim J. An* (*corresponding author)
  • Optimization of Y2O3 Dopant Concentration of Yttria Stabilized Zirconia Thin Film Electrolyte  Prepared by Plasma-Enhanced Atomic Layer Deposition  for High Performance Thin Film Solid Oxide Fuel Cell
    51
    Optimization of Y2O3 Dopant Concentration of Yttria Stabilized Zirconia Thin Film Electrolyte Prepared by Plasma-Enhanced Atomic Layer Deposition for High Performance Thin Film Solid Oxide Fuel Cell
    Energy, Vol. 173, pp. 436-442 (2019/04) (SCI (top 5%), IF: 4.968)(과기부(신진)지원)(*corresponding authors)(Collaboration w/ SNU (Korea))
    G. Y. Cho Y. H. Lee S. Noh W. Yu J. An* S. W. Cha*
  • Atomic Layer Deposition for Surface Engineering of Solid Oxide Fuel Cell  Electrodes
    50
    Atomic Layer Deposition for Surface Engineering of Solid Oxide Fuel Cell Electrodes
    IJPEM-GT, Vol. 6, pp. 1-18 (2019/07) (SCI (top 10%), IF: 3.774)(*corresponding authors)(Korea univ. (Korea), Stanford univ. (US))
    J. H. Shim* G. D. Han H. J. Choi Y. Kim J. Xu J. An* Y. B. Kim* T. M. Gur F. B. Prinz
  • Atomic-Layer-Deposited ZrO2-Doped CeO2 Thin Film for Facilitating Oxygen Exchange in Solid Oxide Fuel Cell
    49
    Atomic-Layer-Deposited ZrO2-Doped CeO2 Thin Film for Facilitating Oxygen Exchange in Solid Oxide Fuel Cell
    Applied Surface Science, Vol. 463, pp. 102-106, (2019/04) (SCI (top 3%), IF: 4.439) (산업부(나노융합), 과기부(신진) 지원)
    B. C. Yang D. Go S. Oh J. W. Shin H. J. Kim J. An* (*corresponding author)
  • Direct Alcohol-Fueled Low-Temperature Solid Oxide Fuel Cells: A Review
    48
    Direct Alcohol-Fueled Low-Temperature Solid Oxide Fuel Cells: A Review
    Energy Technology, Vol. 7, pp. 5-19 (2019) (DOI: 10.1002/ente.201700777) (SCI, IF: 3.175) (교육부(이공계기초), 과기부(신진), 산업부(창의융합인력양성) 지원)(*corresponding authors)(Collaboration w/ Korea univ. (Korea))
    B. C. Yang J. Koo J. W. Shin D. Go J. H. Shim* J. An*
  • Thickness-dependent thermal conductivity of ultrathin (< 100 nm) barium titanate films
    47
    Thickness-dependent thermal conductivity of ultrathin (< 100 nm) barium titanate films
    Ceramics International, Vol. 45, pp. 681-685 (2019.01) (DOI: 10.1016/j.ceramint.2018.09.228) (SCI(top 10%), IF: 3.057) (과기부(신진) 지원)(* corresponding authors)(Collaboration w/ SKKU (Korea))
    Y. Kim J. Park J. W. Shin J. An* J. Cho*
  • High Growth-Rate Atomic Layer Deposition Process of Cerium Oxide Thin Film for Solid Oxide Fuel Cell
    46
    High Growth-Rate Atomic Layer Deposition Process of Cerium Oxide Thin Film for Solid Oxide Fuel Cell
    Ceramics International, accepted. (2018.11) (SCI(top 10%), IF: 3.057) (교내 SCI 연구과제 지원)(Collaboration w/ Air Liquid Lab Korea (Korea))
    J. G. Yu B. C. Yang J. W. Shin S. Lee S. Oh J. Choi J. Jeong W. Noh J. An*(*corrensponding author)
  • Thermal Conductivity of Ultrathin BaTiO3 Films Grown by Plasma-Assisted Atomic Layer Deposition
    45
    Thermal Conductivity of Ultrathin BaTiO3 Films Grown by Plasma-Assisted Atomic Layer Deposition
    Scripta Mater., Vol. 154, pp. 225-229 (2018/05) (SCI(top 5%), IF: 3.224) (과기부(신진) 지원)(Collaboration w/ Stanford univ. (Korea))
    J. Cho J. Park F.B. Prinz J. An* (corresponding author)
  • Atomic Layer Deposited High-k Dielectric on Graphene by Functionalization through Atmospheric Plasma Treatment
    44
    Atomic Layer Deposited High-k Dielectric on Graphene by Functionalization through Atmospheric Plasma Treatment
    Nanotechnology, Vol. 29, p. 195602 (2018/03) (DOI: 10.1088/1361-6528/aab0fb) (SCI(top 25%), IF: 3.440) (교육부(이공계기초), 산업부(창의융합인력양성) 지원, 나노팹사업 지원) (Collaboration w/ Kwangwoon univ. (Korea))
    J. W. Shin M. H. Kang S. Oh B.C. Yang K. Seong H.-S. Ahn T. H. Lee J.An*(corresponding author)
  • High Performance Low-Temperature Solid Oxide Fuel Cell with Atomic Layer Deposited-Yttria Stabilized Zirconia Based Sandwich Electrolyte
    43
    High Performance Low-Temperature Solid Oxide Fuel Cell with Atomic Layer Deposited-Yttria Stabilized Zirconia Based Sandwich Electrolyte
    J. Mater. Chem. A., Vol. 6, pp. 7401-7408 (2018/05) (DOI: 10.1039/C7TA10678E) (SCI(top 5%), IF: 8.867) (Front cover article) (교육부(이공계기초), 산업부(창의융합인력양성, 나노팹사업 지원)(Collaboration w/Stanford univ. and Hewlett-Packard labs (US)) [Introduced in media: 중앙일보: "공해 염려 없는 고성능 연료전지… 휴대폰·드론 방전 걱정 줄인다 (http://news.joins.com/article/2249294) 전자신문: "서울과기대 안교수팀, 저온형 고체산화물 연료전지 상용화 물꼬"(http://www.etnews.com/20180330000209)]
    S. Oh J. Park B. C. Yang J. W. Shin J. Zhang J. An*(corresponding author)