Defects in metal triiodide perovskite materials towards high-performance solar cells: origin, impact, characterization, and engineering

三碘化物 表征(材料科学) 钙钛矿(结构) 能量转换效率 材料科学 兴奋剂 光伏系统 制作 半导体 离子键合 光伏 杂质 纳米技术 光电子学 化学 离子 物理化学 工程类 色素敏化染料 结晶学 电气工程 有机化学 电解质 替代医学 病理 电极 医学
作者
Chenxin Ran,Jiantie Xu,Weiyin Gao,Chunmao Huang,Shi Xue Dou
出处
期刊:Chemical Society Reviews [Royal Society of Chemistry]
卷期号:47 (12): 4581-4610 被引量:552
标识
DOI:10.1039/c7cs00868f
摘要

The rapid development of solar cells (SCs) based on organic-inorganic hybrid metal triiodide perovskite (MTP) materials holds great promise for next-generation photovoltaic devices. The demonstrated power conversion efficiency of the SCs based on MTP (PSCs for short) has reached over 20%. An MTP material is a kind of soft ionic solid semiconductor. The intrinsic optoelectronic properties of MTP are greatly determined by several factors, such as the crystalline phase, doping type, impurities, elemental composition, and defects in its crystal structure. In the development of PSCs, a good understanding and smart engineering of the defects in MTP have been demonstrated to be a key factor for the fabrication of high-efficiency PSCs. In this review, we start with a brief introduction to the types of defects and the mechanisms for their formation in MTP. Then, the positive and negative impacts of defects on the important optoelectronic features of MTP are presented. The optoelectronic properties mainly include charge recombination, charge transport, ion migration, and structural stability. Moreover, commonly used techniques for the characterization of the defects in MTP are systematically summarized. Recent progress on the state-of-the-art defect engineering approaches for the optimization of PSC devices is also summarized, and we also provide some perspectives on the development of high-efficiency PSCs with long-term stability through the optimization of the defects in MTP.
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