界面和异质结构对基于包晶石的太阳能电池稳定性的影响

IF 11.9 1区 物理与天体物理 Q1 PHYSICS, APPLIED Applied physics reviews Pub Date : 2024-10-08 DOI:10.1063/5.0210109
Yuxia Shen, Chongwen Li, Cheng Liu, Samantha Ann Reitz, Bin Chen, Edward H. Sargent
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引用次数: 0

摘要

过去十年间,在实现高功率转换效率(>26%)方面,过氧化物太阳能电池取得了重大进展。然而,实现与现有硅太阳能电池相当的长期稳定性仍然是一项重大挑战,需要进一步研究降解机制,并继续探索界面工程策略。在此,我们回顾了包晶和电荷传输层之间界面的稳定性。在热、光和偏压等外部应力的作用下,这些界面特别容易出现缺陷和降解,而其离子性质和热膨胀不匹配又进一步加剧了这一问题。为了解决这些问题,人们开发了各种策略,如使用添加剂、有机自组装单层和低维包晶石来提高界面稳定性。这些方法可提高结晶度,减少与缺陷有关的重组,并改善机械韧性。
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The impact of interface and heterostructure on the stability of perovskite-based solar cells
Perovskite solar cells have made significant progress in achieving high power conversion efficiency (>26%) in the past decade. However, achieving long-term stability comparable to established silicon solar cells is still a significant challenge, requiring further investigation into degradation mechanisms and continued exploration of interface engineering strategies. Here we review stability at the interfaces between perovskite and charge transport layers. These interfaces are particularly vulnerable to defects and degradation under external stresses such as heat, light, and bias, further compounded by their ionic nature and thermal expansion mismatch. To address these issues, strategies such as the use of additives, organic self-assembled monolayers, and low-dimensional perovskites have been developed to improve interface stability. These approaches enhance crystallinity, reduce defect-related recombination, and improve mechanical toughness.
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来源期刊
Applied physics reviews
Applied physics reviews PHYSICS, APPLIED-
CiteScore
22.50
自引率
2.00%
发文量
113
审稿时长
2 months
期刊介绍: Applied Physics Reviews (APR) is a journal featuring articles on critical topics in experimental or theoretical research in applied physics and applications of physics to other scientific and engineering branches. The publication includes two main types of articles: Original Research: These articles report on high-quality, novel research studies that are of significant interest to the applied physics community. Reviews: Review articles in APR can either be authoritative and comprehensive assessments of established areas of applied physics or short, timely reviews of recent advances in established fields or emerging areas of applied physics.
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