SANGMYUNG UNIVERSITY

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교수프로필

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백상현
  • 학위: 박사
  • 연구실 : (S관)중앙교수회관 (S421)
  • 연락처 : 02-2287-6150
  • 세부전공 : 태양에너지소재
이메일
학위
  • 박사, 고려대학교 소재화학과 (세부전공 : 태양에너지소재), 201302
  • 석사, 고려대학교 소재화학과 (세부전공 : 소재무기화학), 200902
  • 학사, 고려대학교 화학과, 200702
경력
  • Postdoc Research Associate, EPFL, (2014.09~2019.12)
논문
  • Carbazole-terminated isomeric hole transporting materials for perovskite solar cells, ACS Applied Materials & Interfaces, 202004
  • Doped but stable: spirobisacridine hole transporting materials for hysteresis-free and stable perovskite solar cells, Journal of the American Chemical Society, 201912
  • Stable perovskite solar cells using tin acetylacetonate based electron transporting layers, Energy & Environmental Science, 201904
  • Molecular engineering of enamine-based small organic compounds as hole-transporting materials for perovskite solar cells, Journal of Materials Chemistry C, 201902
  • Unsymmetrical and Symmetrical Zn(II) Phthalocyanines as Hole-Transporting Materials for Perovskite Solar Cells, ACS Applied Energy Materials, 201805
  • Selective growth of layered perovskites for stable and efficient photovoltaics, Energy & Environmental Science, 201802
  • Diphenylamine‐Substituted Carbazole‐Based Hole Transporting Materials for Perovskite Solar Cells: Influence of Isomeric Derivatives,, Advanced Functional Materials, 201801
  • Dopant-Free Hole-Transporting Materials for Stable and Efficient Perovskite Solar Cells, Advanced Materials, 201707
  • From Nano- to Micrometer Scale: The Role of Antisolvent Treatment on High Performance Perovskite Solar Cells, Chemistry of Materials, 201703
  • Molecular engineering of face-on oriented dopant-free hole transporting material for perovskite solar cells with 19% PCE, Journal of Materials Chemistry A,, 201703
  • Carbazole-based Enamine: Low-cost and Efficient Hole Transporting Material for Perovskite Solar Cells, Nano Energy, 201701
  • Highly efficient perovskite solar cells with a compositionally engineered perovskite/hole transporting material interface, Energy & Environmental Science, 201701
  • A highly hindered bithiophene-functionalized dispiro-oxepine derivative as an efficient hole transporting material for perovskite solar cells,, Journal of Materials Chemistry A,, 201610
  • Donor-π-Donor Type Hole Transporting Material: Marked π-Bridge Effects on Optoelectronic Properties, Solid-State Structure, and Perovskite Solar Cell Efficiency, Chemical Science, 201605
지식재산
  • HOLE TRANSPORTING ORGANIC MOLECULES CONTAINING ENAMINE GROUPS FOR OPTOELECTRONIC AND PHOTOELECTROCHEMICAL DEVICES, Vytautas GETAUTIS, Maryte DASKEVICIENE, Tadas MALINAUSKAS, Mohammad Khaja NAZEERUDDIN, Sanghyun PAEK, Kasparas RAKSTYS , 20180322
  • DISPIRO-OXEPINE/THIAPINE DERIVATIVES FOR OPTOELECTRONIC SEMICONDUCTORS, Kasparas RAKSTYS, Sanghyun PAEK, Muhammad SOHAIL, Klaus H. DAMEN, Mohammad Khaja NAZEERUDDIN , 20180111
  • HOLE TRANSPORTING AND LIGHT ABSORBING MATERIAL FOR SOLID STATE SOLAR CELLS, Peng QIN, Mohammad Kaja NAZEERUDDIN, Michael GRAETZEL, Jaejung KO, Sanghyun PAEK, Nara CHO, 20150723