材料科学
能量转换效率
太阳能电池
原子层沉积
钙钛矿太阳能电池
钙钛矿(结构)
化学气相沉积
薄膜
相对湿度
化学工程
热稳定性
光电子学
纳米技术
气象学
物理
工程类
作者
Young Il Lee,Nam Joong Jeon,Bong Jun Kim,Hyunjeong Shim,Tae‐Youl Yang,Sang Il Seok,Jangwon Seo,Sung Gap Im
标识
DOI:10.1002/aenm.201701928
摘要
Abstract The stability of a perovskite solar cell (PSC) is enhanced significantly by applying a customized thin‐film encapsulation (TFE). The TFE is composed of a multilayer stack of organic/inorganic layers deposited by initiated chemical vapor deposition and atomic layer deposition, respectively, whose water vapor transmission rate is on the order of 10 −4 g m −2 d −1 at an accelerated condition of 38 °C and 90% relative humidity (RH). The TFE is optimized, taking into consideration various aspects of thermosensitive PSCs. Lowering the process temperature is one of the most effective methods for minimizing the thermal damage to the PSC during the monolithic integration of the TFE onto PSC. The direct deposition of TFE onto a PSC causes less than 0.3% degradation (from 18.5% to 18.2%) in the power conversion efficiency, while the long‐term stability is substantially improved; the PSC retains 97% of its original efficiency after a 300 h exposure to an accelerated condition of 50 °C and 50% RH, confirming the enhanced stability of the PSC against moisture. This is the first demonstration of a TFE applied directly onto PSCs in a damage‐free manner, which will be a powerful tool for the development of highly stable PSCs with high efficiency.
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