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钙钛矿太阳能电池的稳定性:问题与前景

Stability of perovskite solar cells: issues and prospects.

作者信息

Chowdhury Tanzi Ahmed, Bin Zafar Md Arafat, Sajjad-Ul Islam Md, Shahinuzzaman M, Islam Mohammad Aminul, Khandaker Mayeen Uddin

机构信息

Department of Electrical & Electronic Engineering, Faculty of Engineering, International Islamic University Chittagong Kumira Bangladesh

Institute of Fuel Research and Development, Bangladesh Council of Scientific and Industrial Research (BCSIR) Dhaka 1205 Bangladesh

出版信息

RSC Adv. 2023 Jan 9;13(3):1787-1810. doi: 10.1039/d2ra05903g. eCollection 2023 Jan 6.

Abstract

Even though power conversion efficiency has already reached 25.8%, poor stability is one of the major challenges hindering the commercialization of perovskite solar cells (PSCs). Several initiatives, such as structural modification and fabrication techniques by numerous ways, have been employed by researchers around the world to achieve the desired level of stability. The goal of this review is to address the recent improvements in PSCs in terms of structural modification and fabrication procedures. Perovskite films are used to provide a broad range of stability and to lose up to 20% of their initial performance. A thorough comprehension of the effect of the fabrication process on the device's stability is considered to be crucial in order to provide the foundation for future attempts. We summarize several commonly used fabrication techniques - spin coating, doctor blade, sequential deposition, hybrid chemical vapor, and alternating layer-by-layer. The evolution of device structure from regular to inverted, HTL free, and ETL including the changes in material utilization from organic to inorganic, as well as the perovskite material are presented in a systematic manner. We also aimed to gain insight into the functioning stability of PSCs, as well as practical information on how to increase their operational longevity through sensible device fabrication and materials processing, to promote PSC commercialization at the end.

摘要

尽管功率转换效率已达到25.8%,但稳定性差仍是阻碍钙钛矿太阳能电池(PSC)商业化的主要挑战之一。世界各地的研究人员采取了多种举措,如通过多种方式进行结构改性和制造技术改进,以达到所需的稳定性水平。本综述的目的是探讨PSC在结构改性和制造工艺方面的最新进展。钙钛矿薄膜具有广泛的稳定性,但初始性能会损失高达20%。全面理解制造工艺对器件稳定性的影响对于为未来的研究提供基础至关重要。我们总结了几种常用的制造技术——旋涂、刮涂、顺序沉积、混合化学气相沉积和交替逐层沉积。系统地介绍了器件结构从常规到倒置、无HTL和ETL的演变,包括材料利用从有机到无机的变化以及钙钛矿材料。我们还旨在深入了解PSC的功能稳定性,以及如何通过合理的器件制造和材料处理来提高其运行寿命的实用信息,最终推动PSC的商业化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c14/9828105/d871a2e89749/d2ra05903g-f1.jpg

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