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Two-Dimensional Materials for Halide Perovskite-Based Optoelectronic Devices

机译:卤化物钙钛矿基光电器件的二维材料

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Halide perovskites have high light absorption coefficients, long charge carrier diffusion lengths, intense photoluminescence, and slow rates of non-radiative charge recombination. Thus, they are attractive photoactive materials for developing high-performance optoelectronic devices. These devices are also cheap and easy to be fabricated. To realize the optimal performances of halide perovskite-based optoelectronic devices (HPODs), perovskite photoactive layers should work effectively with other functional materials such as electrodes, interfacial layers and encapsulating films. Conventional two-dimensional (2D) materials are promising candidates for this purpose because of their unique structures and/or interesting optoelectronic properties. Here, we comprehensively summarize the recent advancements in the applications of conventional 2D materials for halide perovskite-based photodetectors, solar cells and light-emitting diodes. The examples of these 2D materials are graphene and its derivatives, mono- and few-layer transition metal dichalcogenides (TMDs), graphdiyne and metal nanosheets, etc. The research related to 2D nanostructured perovskites and 2D Ruddlesden-Popper perovskites as efficient and stable photoactive layers is also outlined. The syntheses, functions and working mechanisms of relevant 2D materials are introduced, and the challenges to achieving practical applications of HPODs using 2D materials are also discussed.
机译:卤化物钙钛矿具有高的光吸收系数,长的载流子扩散长度,强烈的光致发光以及较慢的非辐射电荷复合速率。因此,它们是用于开发高性能光电器件的有吸引力的光敏材料。这些装置也很便宜并且易于制造。为了实现基于卤化物钙钛矿的光电器件(HPOD)的最佳性能,钙钛矿光敏层应与其他功能材料(例如电极,界面层和封装膜)有效地协同工作。常规的二维(2D)材料由于其独特的结构和/或令人感兴趣的光电特性而有望用于此目的。在这里,我们全面总结了常规2D材料在卤化钙钛矿基光电探测器,太阳能电池和发光二极管中的最新应用进展。这些2D材料的示例包括石墨烯及其衍生物,单层和多层过渡金属二卤化金属(TMD),石墨二炔和金属纳米片等。与2D纳米结构钙钛矿和2D Ruddlesden-Popper钙钛矿有关的研究具有高效率和稳定性。还概述了图层。介绍了相关2D材料的合成,功能和工作机制,并讨论了使用2D材料实现HPOD实际应用所面临的挑战。

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