论文标题
钙钛矿风格的光伏材料 - 从设计到设备
Perovskite-Inspired Materials for Photovoltaics -- From Design to Devices
论文作者
论文摘要
在过去的十年中,铅壁钙化盐表现出了光伏效率的惊人提高。现在,最有效的Perovskite设备优于行业标准的多晶硅太阳能电池,尽管使用基于溶液的方法通常在低温下生长钙钛矿。但是,铅的毒性及其在水中的现成溶解度是广泛实施的关注点。这些挑战以及钙棍网站的许多成功,激发了多个学科的重大努力,以寻找无铅和稳定的替代方案,这些替代方案可以模仿钙钛矿通过低温,易于制造方法的能力来实现高性能。这篇综述讨论了为发现无铅钙钛矿启发的材料所采用的计算和实验方法,以及在合成这些化合物时的最新成功和挑战。讨论了甲基高甲基钙钛矿在光伏设备中表现出的非凡性能的原子性起源,同时还讨论了工程在替代性的下一代材料中进行高性能的关键挑战。除了光伏技术之外,这篇综述还讨论了钙钛矿启发的材料在促进在其他光电应用中应用新材料的努力所产生的影响,即发光二极管,光催化剂,辐射探测器,薄膜晶体管和emristors。最后,讨论了该领域面临的前景和关键挑战,在推进钙钛矿风格的材料发展到商业设备中的实现方面。
Lead-halide perovskites have demonstrated astonishing increases in power conversion efficiency in photovoltaics over the last decade. The most efficient perovskite devices now outperform industry-standard multi-crystalline silicon solar cells, despite the fact that perovskites are typically grown at low temperature using simple solution-based methods. However, the toxicity of lead and its ready solubility in water are concerns for widespread implementation. These challenges, alongside the many successes of the perovskites, have motivated significant efforts across multiple disciplines to find lead-free and stable alternatives which could mimic the ability of the perovskites to achieve high performance with low temperature, facile fabrication methods. This Review discusses the computational and experimental approaches that have been taken to discover lead-free perovskite-inspired materials, and the recent successes and challenges in synthesizing these compounds. The atomistic origins of the extraordinary performance exhibited by lead-halide perovskites in photovoltaic devices is discussed, alongside the key challenges in engineering such high-performance in alternative, next-generation materials. Beyond photovoltaics, this Review discusses the impact perovskite-inspired materials have had in spurring efforts to apply new materials in other optoelectronic applications, namely light-emitting diodes, photocatalysts, radiation detectors, thin film transistors and memristors. Finally, the prospects and key challenges faced by the field in advancing the development of perovskite-inspired materials towards realization in commercial devices is discussed.