钙钛矿(结构)
材料科学
光伏系统
电致发光
光电子学
图层(电子)
钙钛矿太阳能电池
光伏
能量转换效率
工程物理
纳米技术
电气工程
化学工程
工程类
作者
Lucija Rakocevic,Laura E. Mundt,Robert Gehlhaar,Tamara Merckx,Tom Aernouts,Martin C. Schubert,Stefan W. Glunz,Jef Poortmans
出处
期刊:Solar RRL
[Wiley]
日期:2019-09-11
卷期号:3 (12)
被引量:39
标识
DOI:10.1002/solr.201900338
摘要
Hybrid metal‐halide perovskite‐based thin‐film photovoltaics (PVs) have the potential to become the next generation of commercialized PV technology with certified power conversion efficiencies reaching 24% on devices having 0.1 cm 2 area. Recent efforts in upscaling this technology result in an efficiency of 12.6% for 354 cm 2 modules. However, upscaling loss for perovskite‐based PVs is higher than for any other PV technology. In this study, upscaling losses of devices with aperture area 0.1, 4, and 100 cm 2 are investigated, with a focus on layer inhomogeneities. Electroluminescence, dark lock‐in thermography, microphotoluminescence spectroscopy, and electron spectroscopy are used to analyze and group layer inhomogeneities with a minimal size of 10 μm and to compare loss mechanisms for radial and linear deposition techniques. Analysis results help to identify current processing pitfalls, where understanding and control of perovskite crystal formation plays the crucial role.
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