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NiO/Perovskite Heterojunction Contact Engineering for Highly Efficient and Stable Perovskite Solar Cells

机译:NIO / PEROVSKITE HEDORACUNCT联系方式,用于高效稳定的钙钛矿太阳能电池

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摘要

Recent research shows that the interface state in perovskite solar cells is the main factor which affects the stability and performance of the device, and interface engineering including strain engineering is an effective method to solve this issue. In this work, a CsBr buffer layer is inserted between NiOx hole transport layer and perovskite layer to relieve the lattice mismatch induced interface stress and induce more ordered crystal growth. The experimental and theoretical results show that the addition of the CsBr buffer layer optimizes the interface between the perovskite absorber layer and the NiOx hole transport layer, reduces interface defects and traps, and enhances the hole extraction/transfer. The experimental results show that the power conversion efficiency of optimal device reaches up to 19.7% which is significantly higher than the efficiency of the device without the CsBr buffer layer. Meanwhile, the device stability is also improved. This work provides a deep understanding of the NiOx/perovskite interface and provides a new strategy for interface optimization.
机译:最近的研究表明,Perovskite太阳能电池中的界面状态是影响器件稳定性和性能的主要因素,以及包括应变工程的界面工程是解决这个问题的有效方法。在这项工作中,将CSBR缓冲层插入NiOx空穴传输层和Perovskite层之间以减轻格子错配诱导的界面应力并诱导更有序的晶体生长。实验和理论结果表明,CSBR缓冲层的添加优化了钙钛矿吸收层和NiOx空穴传输层之间的界面,减少了界面缺陷和陷阱,并增强了孔提取/转移。实验结果表明,最佳装置的功率转换效率高达19.7%,显着高于器件的效率而没有CSBR缓冲层。同时,设备稳定性也得到改善。这项工作对NIOx / Perovskite接口提供了深入的了解,并为界面优化提供了一种新的策略。

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