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层状低维Ruddlesden-Popper和Dion-Jacobson钙钛矿:从材料特性到光伏器件性能

Layered Low-Dimensional Ruddlesden-Popper and Dion-Jacobson Perovskites: From Material Properties to Photovoltaic Device Performance.

作者信息

Liu Rui, Hu Xin, Xu Maoxia, Ren Haorong, Yu Hua

机构信息

School of New Energy and Materials, Southwest Petroleum University, 610500, Chengdu, P. R. China.

出版信息

ChemSusChem. 2023 Oct 6;16(19):e202300736. doi: 10.1002/cssc.202300736. Epub 2023 Aug 1.

DOI:10.1002/cssc.202300736
PMID:37321966
Abstract

Layered low-dimensional halide perovskites (LDPs) with multiple quantum well structure have shown increasing research interest in photovoltaic solar cell applications owing to their intrinsic moisture stability and favorable photophysical properties in comparison with their three-dimensional (3D) counterparts. The most common LDPs are Ruddlesden-Popper (RP) phases and Dion-Jacobson (DJ) phases, both of which have made significant research advances in efficiency and stability. However, distinct interlayer cations between RP and DJ phase lead to disparate chemical bonds and different perovskite structures, which endow RP and DJ perovskite with distinctive chemical and physical properties. Plenty of reviews have reported the research progress of LDPs but no summary has elaborated from the perspective of the merits and drawbacks of the RP and DJ phases. Herein, in this review, we offer a comprehensive expound on the merits and promises of RP and DJ LDPs from their chemical structure, physicochemical properties, and photovoltaic performance research progress aiming to provide a new insight into the dominance of RP and DJ phases. Then, we reviewed the recent progress on the synthesis and implementation of RP and DJ LDPs thin films and devices, as well as their optoelectronic properties. Finally, we discussed the possible strategies to resolve existing toughs to realize the desired high-performance LDPs solar cells.

摘要

具有多量子阱结构的层状低维卤化物钙钛矿(LDPs)因其固有的湿度稳定性以及与三维(3D)对应物相比良好的光物理性质,在光伏太阳能电池应用中已显示出越来越高的研究兴趣。最常见的LDPs是Ruddlesden-Popper(RP)相和Dion-Jacobson(DJ)相,两者在效率和稳定性方面都取得了重大研究进展。然而,RP相和DJ相之间不同的层间阳离子导致了不同的化学键和不同的钙钛矿结构,这赋予了RP和DJ钙钛矿独特的化学和物理性质。大量综述报道了LDPs的研究进展,但没有从RP相和DJ相的优缺点角度进行详细阐述。在此,在本综述中,我们从RP和DJ LDPs的化学结构、物理化学性质以及光伏性能研究进展方面对其优点和前景进行了全面阐述,旨在为RP和DJ相的优势提供新的见解。然后,我们回顾了RP和DJ LDPs薄膜及器件的合成与应用以及它们的光电性质方面的最新进展。最后,我们讨论了解决现有难题以实现所需高性能LDPs太阳能电池的可能策略。

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