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强增强的光伏性能和空气稳定的碘氧化铋(BiOI)的缺陷物理。

Strongly Enhanced Photovoltaic Performance and Defect Physics of Air-Stable Bismuth Oxyiodide (BiOI).

机构信息

Cavendish Laboratory, University of Cambridge, JJ Thomson Ave, Cambridge, CB3 0HE, UK.

Department of Materials Science and Metallurgy, University of Cambridge, 27 Charles Babbage Rd, Cambridge, CB3 0FS, UK.

出版信息

Adv Mater. 2017 Sep;29(36). doi: 10.1002/adma.201702176. Epub 2017 Jul 17.

Abstract

Bismuth-based compounds have recently gained increasing attention as potentially nontoxic and defect-tolerant solar absorbers. However, many of the new materials recently investigated show limited photovoltaic performance. Herein, one such compound is explored in detail through theory and experiment: bismuth oxyiodide (BiOI). BiOI thin films are grown by chemical vapor transport and found to maintain the same tetragonal phase in ambient air for at least 197 d. The computations suggest BiOI to be tolerant to antisite and vacancy defects. All-inorganic solar cells (ITO|NiO |BiOI|ZnO|Al) with negligible hysteresis and up to 80% external quantum efficiency under select monochromatic excitation are demonstrated. The short-circuit current densities and power conversion efficiencies under AM 1.5G illumination are nearly double those of previously reported BiOI solar cells, as well as other bismuth halide and chalcohalide photovoltaics recently explored by many groups. Through a detailed loss analysis using optical characterization, photoemission spectroscopy, and device modeling, direction for future improvements in efficiency is provided. This work demonstrates that BiOI, previously considered to be a poor photocatalyst, is promising for photovoltaics.

摘要

铋基化合物最近作为潜在无毒且对缺陷容忍的太阳能吸收剂引起了越来越多的关注。然而,最近研究的许多新材料表现出有限的光伏性能。本文通过理论和实验详细研究了一种此类化合物:氧化碘铋(BiOI)。通过化学气相输运法生长 BiOI 薄膜,在环境空气中至少 197 天内保持相同的四方相。计算表明,BiOI 对反位和空位缺陷具有容忍性。所制备的全固态无迟滞太阳能电池(ITO|NiO |BiOI|ZnO|Al)在选择的单色光激发下的外量子效率高达 80%。在 AM 1.5G 光照下的短路电流密度和功率转换效率是之前报道的 BiOI 太阳能电池的近两倍,以及其他铋卤化物和硫卤化物光伏最近也被许多研究组探索。通过使用光学特性、光发射光谱和器件建模的详细损耗分析,为进一步提高效率指明了方向。这项工作表明,BiOI 之前被认为是一种较差的光催化剂,在光伏领域具有很大的应用潜力。

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