钙钛矿(结构)
材料科学
光伏
能量转换效率
光伏系统
相对湿度
热稳定性
光电子学
纳米技术
化学工程
电气工程
气象学
物理
工程类
作者
NULL AUTHOR_ID,Ziyuan Liu,Lizhi Zhang,NULL AUTHOR_ID,Chuanxiu Jiang,NULL AUTHOR_ID,Chuanyun Li,NULL AUTHOR_ID,NULL AUTHOR_ID,NULL AUTHOR_ID,Jianqi Zhang,NULL AUTHOR_ID,Yuan Zhang,Huiqiong Zhou
标识
DOI:10.1038/s41467-024-50018-4
摘要
Abstract Stability has been a long-standing concern for solution-processed perovskite photovoltaics and their practical applications. However, stable perovskite materials for photovoltaic remain insufficient to date. Here we demonstrate a series of ultrastable Dion−Jacobson (DJ) perovskites (1,4-cyclohexanedimethanammonium)(methylammonium) n −1 Pb n I 3 n +1 ( n ≥ 1) for photovoltaic applications. The scalable technology by blade-coated solar cells for the designed DJ perovskites (nominal n = 5) achieves a maximum stabilized power conversion efficiency (PCE) of 19.11% under an environmental atmosphere. Un-encapsulated cells by blade-coated technology retain 92% of their initial efficiencies for over 4000 hours under ~90% relative humidity (RH) aging conditions. More importantly, these cells also exhibit remarkable thermal (85 °C) and operational stability, which shows negligible efficiency loss after exceeding 5000-hour heat treatment or after operation at maximum power point (MPP) exceeding 6000 hours at 45 °C under a 100 mW cm −2 continuous light illumination.
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