钙钛矿(结构)
材料科学
光伏
薄脆饼
晶界
太阳能电池
光伏系统
制作
纳米技术
薄膜
钙钛矿太阳能电池
纳米晶材料
化学工程
光电子学
复合材料
微观结构
电气工程
替代医学
工程类
医学
病理
作者
Wanyi Nie,Hsinhan Tsai,Reza Asadpour,Jean‐Christophe Blancon,Amanda J. Neukirch,Gautam Gupta,Jared Crochet,Manish Chhowalla,Sergei Tretiak,Muhammad A. Alam,Hsing-Lin Wang,Aditya D. Mohite
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2015-01-29
卷期号:347 (6221): 522-525
被引量:3138
标识
DOI:10.1126/science.aaa0472
摘要
State-of-the-art photovoltaics use high-purity, large-area, wafer-scale single-crystalline semiconductors grown by sophisticated, high-temperature crystal growth processes. We demonstrate a solution-based hot-casting technique to grow continuous, pinhole-free thin films of organometallic perovskites with millimeter-scale crystalline grains. We fabricated planar solar cells with efficiencies approaching 18%, with little cell-to-cell variability. The devices show hysteresis-free photovoltaic response, which had been a fundamental bottleneck for the stable operation of perovskite devices. Characterization and modeling attribute the improved performance to reduced bulk defects and improved charge carrier mobility in large-grain devices. We anticipate that this technique will lead the field toward synthesis of wafer-scale crystalline perovskites, necessary for the fabrication of high-efficiency solar cells, and will be applicable to several other material systems plagued by polydispersity, defects, and grain boundary recombination in solution-processed thin films.
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