首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Optical analysis of CH3NH3SnxPb1-I-x(3) absorbers: a roadmap for perovskite-on-perovskite tandem solar cells
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Optical analysis of CH3NH3SnxPb1-I-x(3) absorbers: a roadmap for perovskite-on-perovskite tandem solar cells

机译:CH3NH3SnxPb1-I-x(3)吸收剂的光学分析:钙钛矿对钙钛矿串联太阳能电池的发展路线图

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摘要

Organic-inorganic perovskite structures in which lead is substituted by tin are exceptional candidates for broadband light absorption. Herein we present a thorough analysis of the optical properties of CH3NH3SnxPb1-xI3 films, providing the field with definitive insights about the possibilities of these materials for perovskite solar cells of superior efficiency. We report a user's guide based on the first set of optical constants obtained for a series of tin/lead perovskite films, which was only possible to measure due to the preparation of optical quality thin layers. According to the Shockley-Queisser theory, CH3NH3SnxPb1-xI3 compounds promise a substantial enhancement of both short circuit photocurrent and power conversion efficiency in single junction solar cells. Moreover, we propose a novel tandem architecture design in which both top and bottom cells are made of perovskite absorbers. Our calculations indicate that such perovskite-on- perovskite tandem devices could reach efficiencies over 35%. Our analysis serves to establish the first roadmap for this type of cells based on actual optical characterization data. We foresee that this study will encourage the research on novel near-infrared perovskite materials for photovoltaic applications, which may have implications in the rapidly emerging field of tandem devices.
机译:铅被锡取代的有机-无机钙钛矿结构是宽带光吸收的最佳选择。本文中,我们对CH3NH3SnxPb1-xI3薄膜的光学性能进行了全面分析,从而为该领域提供了有关这些材料用于生产高效率钙钛矿型太阳能电池的可能性的权威见解。我们基于一系列锡/铅钙钛矿薄膜获得的第一组光学常数来报告用户指南,由于制备了光学质量较薄的层,因此只能进行测量。根据Shockley-Queisser理论,CH3NH3SnxPb1-xI3化合物有望大大提高单结太阳能电池的短路光电流和功率转换效率。此外,我们提出了一种新颖的串联结构设计,其中顶部和底部电池均由钙钛矿吸收剂制成。我们的计算表明,这种钙钛矿对钙钛矿串联设备的效率可超过35%。我们的分析旨在根据实际的光学表征数据为此类电池建立第一个路线图。我们预见到这项研究将鼓励对用于光伏应用的新型近红外钙钛矿材料的研究,这可能对快速发展的串联装置领域产生影响。

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