材料科学
钙钛矿(结构)
钝化
工程物理
理论(学习稳定性)
相(物质)
透视图(图形)
工作(物理)
纳米技术
太阳能电池
卤化物
现象
电流(流体)
计算机科学
相变
钙钛矿太阳能电池
化学物理
光伏系统
薄膜
光伏
光电子学
领域(数学分析)
衍生工具(金融)
作者
Gengchen Hu,Jiawei Zhang,Yonglei Xing,Xiaoyong Jin,Gang Ni,Xingtian Yin
标识
DOI:10.1021/acsami.5c21121
摘要
For mixed-halide perovskite solar cells, the phenomenon of photoinduced phase segregation (PIPS) and its derivative effect of uneven spatial ion distribution within the material have induced a series of adverse consequences. Since the discovery of this phenomenon, although substantial research progress has yielded significant achievements in this field, a systematic logical organization among different research methodologies or models of PIPS remains scarce. To address this gap, this review systematically traces the evolution of PIPS research─from fundamental thin-film properties to its impact on the operational performance of complete solar cells. Through synthesizing prevalent models and corresponding solutions, it endeavors not only to summarize the intrinsic logic within each model framework but also to rigorously analyze the interrelationships among distinct models. Simultaneously, diverging from the substantial body of research focused on analyzing PIPS-affected thin films, this work systematically examines and integrates the implications of the PIPS phenomenon within complete solar cell devices and the corresponding suppression strategies implemented at the device level. This perspective bridges critical mechanistic gaps identified in current experimental investigations while underscoring the imperative for co-optimizing phase stability and defect passivation in next-generation perovskite photovoltaics.
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