Roadmap on commercialization of metal halide perovskite photovoltaics

IF 2.9 4区 物理与天体物理 Q2 OPTICS
S. Feng, Yuanhang Cheng, H. Yip, Yufei Zhong, P. W. Fong, Gang Li, A. Ng, Cong Chen, L. A. Castriotta, F. Matteocci, L. Vesce, D. Saranin, A. Di Carlo, Puqun Wang, J. Ho, Yi Hou, F. Lin, A. Aberle, Zhaoning Song, Yanfa Yan, Xu Chen, Y. Yang, Ali Ashgar Syed, I. Ahmad, T. Leung, Yantao Wang, Yuanjing Lin, A. Ng, Yin Li, Firouzeh G. Ebadi, W. Tress, G. Richardson, Chuang-Ye Ge, Hanlin Hu, M. Karimipour, Fanny Baumann, Kenedy Tabah Tanko, C. Pereyra, Sonia R. Raga, Haibing Xie, M. Lira-Cantú, M. Khenkin, I. Visoly-Fisher, E. Katz, Y. Vaynzof, Rosario Vidal, Guicheng Yu, Hao‐Wu Lin, Shuchen Weng, Shifeng Wang, A. Djurišić
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引用次数: 11

Abstract

Perovskite solar cells (PSCs) represent one of the most promising emerging photovoltaic technologies due to their high power conversion efficiency. However, despite the huge progress made not only in terms of the efficiency achieved, but also fundamental understanding of the relevant physics of the devices and issues which affect their efficiency and stability, there are still unresolved problems and obstacles on the path toward commercialization of this promising technology. In this roadmap, we aim to provide a concise and up to date summary of outstanding issues and challenges, and the progress made toward addressing these issues. While the format of this article is not meant to be a comprehensive review of the topic, it provides a collection of the viewpoints of the experts in the field, which covers a broad range of topics related to PSC commercialization, including those relevant for manufacturing (scaling up, different types of devices), operation and stability (various factors), and environmental issues (in particular the use of lead). We hope that the article will provide a useful resource for researchers in the field and that it will facilitate discussions and move forward toward addressing the outstanding challenges in this fast-developing field.
金属卤化物钙钛矿光伏商业化路线图
钙钛矿太阳能电池(PSCs)由于其高功率转换效率而成为最有前途的新兴光伏技术之一。然而,尽管不仅在效率方面取得了巨大的进步,而且在对设备的相关物理和影响其效率和稳定性的问题的基本理解方面也取得了巨大的进步,但在这一有前途的技术走向商业化的道路上仍然存在未解决的问题和障碍。在这个路线图中,我们的目标是提供一个关于突出问题和挑战的简明和最新的总结,以及在解决这些问题方面取得的进展。虽然本文的格式并不是对该主题的全面回顾,但它提供了该领域专家的观点集合,涵盖了与PSC商业化相关的广泛主题,包括与制造(放大,不同类型的设备),操作和稳定性(各种因素)以及环境问题(特别是铅的使用)相关的主题。我们希望这篇文章将为该领域的研究人员提供有用的资源,并将促进讨论并朝着解决这一快速发展领域的突出挑战前进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.00
自引率
48.10%
发文量
53
审稿时长
3 months
期刊介绍: This journal is devoted to the rapidly advancing research and development in the field of nonlinear interactions of light with matter. Topics of interest include, but are not limited to, nonlinear optical materials, metamaterials and plasmonics, nano-photonic structures, stimulated scatterings, harmonic generations, wave mixing, real time holography, guided waves and solitons, bistabilities, instabilities and nonlinear dynamics, and their applications in laser and coherent lightwave amplification, guiding, switching, modulation, communication and information processing. Original papers, comprehensive reviews and rapid communications reporting original theories and observations are sought for in these and related areas. This journal will also publish proceedings of important international meetings and workshops. It is intended for graduate students, scientists and researchers in academic, industrial and government research institutions.
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