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Polarization-Sensitive Photodetector Using Patterned Perovskite Single-Crystalline Thin Films

机译:偏振敏感光电探测器使用图案化的钙钛矿单晶薄膜

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摘要

Hybrid organic-inorganic perovskite single crystals, compared with their polycrystalline counterparts in thin films, are free from grain boundaries and have fewer defects, and therefore are promising in high-performance optoelectronic devices. Recently, the crystal-structure anisotropy in perovskites has been utilized to achieve polarization-sensitive photodetectors. Here, it is shown that under 532 nm linearly polarized illumination, although MAPbBr(3) (MA=CH3NH3+1) single crystals possess weak in-plane anisotropy, nanogratings made on the crystal surface lead to high polarization photodetection sensitivity of approximate to 2.2 comparable with that of the isotropic perovskite crystals and nanowires, while enhancing both the photodetection responsivity and external quantum efficiency. The surface nanopattern induced polarization sensitivity may find interesting applications in future optoelectronic devices.
机译:与薄膜中的多晶对应物相比,杂化有机 - 无机钙钛矿单晶无晶界,并且具有更少的缺陷,因此具有更少的缺陷,并且在高性能光电器件方面具有很大的缺陷。 最近,已经利用了钙钛矿中的晶体结构各向异性来实现极化敏感光电探测器。 这里,示出了在532nm线性偏振照明下,虽然MAPBBR(3)(MA = CH3NH3 + 1)单晶具有较弱的面内各向异性,在晶体表面上制造的纳米褶皱导致高偏振光电探测到2.2的偏振光电检测灵敏度。 与各向同性钙钛矿晶体和纳米线相当,同时增强光电检测反应性和外部量子效率。 表面纳米透舱诱导的偏振灵敏度可能在未来的光电器件中找到有趣的应用。

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