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倒置钙钛矿太阳能电池的发展:综述

Development on inverted perovskite solar cells: A review.

作者信息

Nyiekaa Emmanuel A, Aika Timothy A, Orukpe Patience E, Akhabue Christopher E, Danladi Eli

机构信息

Department of Electrical and Electronics Engineering, University of Benin, Benin City, Nigeria.

Department of Electrical and Electronics Engineering, Joseph Sarwuan Tarka University Makurdi, Nigeria.

出版信息

Heliyon. 2024 Jan 14;10(2):e24689. doi: 10.1016/j.heliyon.2024.e24689. eCollection 2024 Jan 30.

Abstract

Recently, inverted perovskite solar cells (IPSCs) have received note-worthy consideration in the photovoltaic domain because of its dependable operating stability, minimal hysteresis, and low-temperature manufacture technique in the quest to satisfy global energy demand through renewable means. In a decade transition, perovskite solar cells in general have exceeded 25 % efficiency as a result of superior perovskite nanocrystalline films obtained via low temperature synthesis methods along with good interface and electrode materials management. This review paper presents detail processes of refining the stability and power conversion efficiencies in IPSCs. The latest development in the power conversion efficiency, including structural configurations, prospect of tandem solar cells, mixed cations and halides, films' fabrication methods, charge transport material alterations, effects of contact electrode materials, additive and interface engineering materials used in IPSCs are extensively discussed. Additionally, insights on the state of the art and IPSCs' continued development towards commercialization are provided.

摘要

最近,倒置钙钛矿太阳能电池(IPSCs)因其可靠的运行稳定性、最小的滞后现象以及低温制造技术,在光伏领域受到了值得关注的重视,以通过可再生方式满足全球能源需求。在十年的发展历程中,由于通过低温合成方法获得了优异的钙钛矿纳米晶薄膜,以及良好的界面和电极材料管理,一般的钙钛矿太阳能电池效率已超过25%。这篇综述文章介绍了提高IPSCs稳定性和功率转换效率的详细过程。广泛讨论了功率转换效率的最新进展,包括结构配置、串联太阳能电池的前景、混合阳离子和卤化物、薄膜制造方法、电荷传输材料的改变、接触电极材料的影响、IPSCs中使用的添加剂和界面工程材料。此外,还提供了对IPSCs的技术现状及其向商业化持续发展的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcae/10828711/07e67e0dd8b7/gr1.jpg

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