Aqueous phase synthesis of trimethylsulfoxonium lead triiodide for moisture-stable perovskite solar cells

  • Rahman, Md Mahbubur
  • Ge, Chuang-ye
  • Yoo, Kicheon
  • Lee, Jae-Joon
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초록

Organosulfonium cations have attracted growing attention over conventional organoammonium cations for the development of moisture-stable hybrid organic-inorganic metal halide perovskite solar cells (PSCs). Herein, the synthesis of a moisture-stable trimethylsulfoxonium lead triiodide ((CH3)(3)SOPbI3 or TMSOPbI3) perovskite is described via a two-step solution process in an aqueous medium. The synthesized TMSOPbI3 exhibits a one-dimensional nanorod array with an optical bandgap of 2.30 eV and a hexagonal crystal structure. In addition, the fabricated fluorine-doped tin oxide/compact-TiO2/meso-porous-TiO2/TMSOPbI3/CuSCN/Au PSC device generates a maximum power conversion efficiency (PCE) of 2.23% with a good moisture stability at ambient temperature and relative humidity (50%) with no PCE loss during 336 h and no change in the crystal structure during 50 days. The high moisture stability of the device is attributed to the absence of hydrogen bonding between the trimethylsulfoxonium (TMSO+) cation and the H2O molecules along with strong electrostatic interactions between the TMSO+ and [PbI6](4-) polyhedra in the TMSOPbI3. This research has demonstrated that TMSO+ is suitable for fabricating a stable perovskite-like material with good optoelectronic properties and is a promising material for practical applications. (C) 2021 Elsevier Ltd. All rights reserved.

키워드

TMSOPbI3 nanorodHigh stabilityCuSCN hole transport layerHysteresis-freeDFT calculationLONG-TERM STABILITYRECENT PROGRESSTRANSPORT LAYEREFFICIENTPERFORMANCEIODIDEMETHYLAMMONIUMCAPACITYSYSTEMS
제목
Aqueous phase synthesis of trimethylsulfoxonium lead triiodide for moisture-stable perovskite solar cells
저자
Rahman, Md MahbuburGe, Chuang-yeYoo, KicheonLee, Jae-Joon
DOI
10.1016/j.mtener.2021.100803
발행일
2021-09
유형
Article
저널명
MATERIALS TODAY ENERGY
21