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用于太阳能电池的空位有序卤化物双钙钛矿材料的合成与应用的最新进展:铅基钙钛矿的一种有前途的替代品

Recent Advances in the Synthesis and Application of Vacancy-Ordered Halide Double Perovskite Materials for Solar Cells: A Promising Alternative to Lead-Based Perovskites.

作者信息

Murugan Santhosh, Lee Eun-Cheol

机构信息

Department of Nanoscience and Technology, Graduate School, Gachon University, Seongnam-si 13120, Republic of Korea.

Department of Physics, Gachon University, Seongnam-si 13120, Republic of Korea.

出版信息

Materials (Basel). 2023 Jul 27;16(15):5275. doi: 10.3390/ma16155275.

Abstract

Lead-based halide perovskite materials are being developed as efficient light-absorbing materials for use in perovskite solar cells (PSCs). PSCs have shown remarkable progress in power conversion efficiency, increasing from 3.80% to more than 25% within a decade, showcasing their potential as a promising renewable energy technology. Although PSCs have many benefits, including a high light absorption coefficient, the ability to tune band gap, and a long charge diffusion length, the poor stability and the toxicity of lead represent a significant disadvantage for commercialization. To address this issue, research has focused on developing stable and nontoxic halide perovskites for use in solar cells. A potential substitute is halide double perovskites (HDPs), particularly vacancy-ordered HDPs, as they offer greater promise because they can be processed using a solution-based method. This review provides a structural analysis of HDPs, the various synthesis methods for vacancy-ordered HDPs, and their impact on material properties. Recent advances in vacancy-ordered HDPs are also discussed, including their role in active and transport layers of solar cells. Furthermore, valuable insights for developing high-performance vacancy-ordered HDP solar cells are reported from the detailed information presented in recent simulation studies. Finally, the potential of vacancy-ordered HDPs as a substitute for lead-based perovskites is outlined. Overall, the ability to tune optical and electronic properties and the high stability and nontoxicity of HDPs have positioned them as a promising candidate for use in photovoltaic applications.

摘要

基于铅的卤化物钙钛矿材料正在被开发用作钙钛矿太阳能电池(PSC)中的高效吸光材料。PSC在功率转换效率方面取得了显著进展,在十年内从3.80%提高到了25%以上,展现出其作为一种有前途的可再生能源技术的潜力。尽管PSC有许多优点,包括高光吸收系数、能够调节带隙以及长电荷扩散长度,但铅的稳定性差和毒性是商业化的一个重大缺点。为了解决这个问题,研究集中在开发用于太阳能电池的稳定且无毒的卤化物钙钛矿。一种潜在的替代品是卤化物双钙钛矿(HDP),特别是空位有序的HDP,因为它们更有前景,因为可以使用基于溶液的方法进行加工。本文综述了HDP的结构分析、空位有序HDP的各种合成方法及其对材料性能的影响。还讨论了空位有序HDP的最新进展,包括它们在太阳能电池有源层和传输层中的作用。此外,从最近模拟研究中提供的详细信息中报告了开发高性能空位有序HDP太阳能电池的宝贵见解。最后,概述了空位有序HDP作为铅基钙钛矿替代品的潜力。总体而言,调节光学和电子性质的能力以及HDP的高稳定性和无毒使其成为光伏应用中有前途的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a644/10420113/34880a204cf8/materials-16-05275-g002.jpg

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