Thermochromic halide perovskite solar cells

被引:0
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作者
Jia Lin
Minliang Lai
Letian Dou
Christopher S. Kley
Hong Chen
Fei Peng
Junliang Sun
Dylan Lu
Steven A. Hawks
Chenlu Xie
Fan Cui
A. Paul Alivisatos
David T. Limmer
Peidong Yang
机构
[1] University of California,Department of Chemistry
[2] Lawrence Berkeley National Laboratory,Materials Sciences Division
[3] Shanghai University of Electric Power,Department of Physics
[4] Purdue University,Davidson School of Chemical Engineering
[5] Stockholm University,Berzelii Center EXSELENT on Porous Materials, Department of Materials and Environmental Chemistry
[6] Lawrence Livermore National Laboratory,Department of Materials Science and Engineering
[7] Kavli Energy NanoScience Institute,undefined
[8] University of California,undefined
来源
Nature Materials | 2018年 / 17卷
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摘要
Smart photovoltaic windows represent a promising green technology featuring tunable transparency and electrical power generation under external stimuli to control the light transmission and manage the solar energy. Here, we demonstrate a thermochromic solar cell for smart photovoltaic window applications utilizing the structural phase transitions in inorganic halide perovskite caesium lead iodide/bromide. The solar cells undergo thermally-driven, moisture-mediated reversible transitions between a transparent non-perovskite phase (81.7% visible transparency) with low power output and a deeply coloured perovskite phase (35.4% visible transparency) with high power output. The inorganic perovskites exhibit tunable colours and transparencies, a peak device efficiency above 7%, and a phase transition temperature as low as 105 °C. We demonstrate excellent device stability over repeated phase transition cycles without colour fade or performance degradation. The photovoltaic windows showing both photoactivity and thermochromic features represent key stepping-stones for integration with buildings, automobiles, information displays, and potentially many other technologies.
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页码:261 / 267
页数:6
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