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Recent progress in hybrid perovskite solar cells through scanning tunneling microscopy and spectroscopy

机译:最近的进展混合钙钛矿的太阳能电池通过扫描隧道显微镜和光谱学

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Currently, sustainable renewable energy sources are urgently required to fulfill the cumulative energy needs of the world's 7.8 billion population, since the conventional coal and fossil fuels will be exhausted soon. Photovoltaic devices are a direct and efficient means to produce a huge amount of energy to meet these energy targets. In particular, hybrid-perovskite-based photovoltaic devices merit special attention not only due to their exceptional efficiency for generating appreciable energy but also their tunable band gaps and the ease of device fabrication. However, the commercialization of such devices suffers from the instability of the compositional materials. The cause of instability is the perovskite's structure and its morphology at the sub-molecular level; thereby revealing and eliminating these instabilities are a striking challenge. To address this issue, scanning tunneling microscopy/spectroscopy (STM/STS) presents a comprehensive method to allow the visualization of the morphology and electronic structure of materials at atomic-level resolution. Here, we review the recent developments of perovskite-based solar cells (PSCs), the STM/STS analysis of photoactive halide/hybrid and oxide materials, and the real-time STM/STS investigation of electronic structures with defects and traps that are believed to mainly affect device performances. The detailed STM/STS analysis can facilitate a better understanding of the properties of materials at the nanoscale. This informative study may hold great promise to advance the development of stable PSCs under atmospheric conditions.
机译:目前,可持续发展的可再生能源迫切需要实现累计吗78亿年世界能源需求的人口,因为传统的煤炭和化石燃料即将耗尽。设备是直接而有效的手段产生巨大的能量来满足这些能源目标。hybrid-perovskite-based光伏设备不仅因为他们值得特别的关注产生可观的特殊效率而且他们的可调带隙和能量方便设备制造。这些设备遭受的商业化组分材料的不稳定。不稳定的钙钛矿的原因在sub-molecular结构及其形态水平;不稳定是一个引人注目的挑战。解决这个问题,扫描隧道显微镜/光谱学(STM / STS)了全面的方法来允许可视化的形态和电子结构材料的原子水平。回顾最近的发展perovskite-based太阳能电池(已经),STM / STS分析光活化的卤/混合和氧化材料,并实时STM / STS调查的电子结构据信主要缺陷和陷阱影响设备性能。分析可以促进更好的理解材料在纳米尺度上的属性。这个信息研究可能蕴含着巨大的希望已经在进步发展的稳定大气条件。

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