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Millimeter-Scale Nonlocal Photo-Sensing Based on Single-Crystal Perovskite Photodetector

机译:基于单晶钙钛矿光电探测器的毫米级非局部光学感应

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摘要

Summary: Organometal trihalide perovskites (OTPs) are promising optoelectronic materials for high-performance photodetectors. However, up to now, traditional polycrystal OTP-based photodetectors have demonstrated limited effective photo-sensing range. Recently, bulk perovskite single crystals have been seen to have the potential for position-sensitive photodetection. Herein, for the first time, we demonstrate a position-dependent photodetector based on perovskite single crystals by scanning a focused laser beam over the device perpendicular to the channel. The photodetector shows the best-ever effective photo-sensing distance up to the millimeter range. The photoresponsivity and photocurrent decrease by nearly an order of magnitude when the beam position varies from 0 to 950 μm and the tunability of carrier diffusion length in CH3NH2PbBr3 with the variation of the exciting laser intensity is demonstrated. Furthermore, a numerical model based on transport of photoexcited carriers is proposed to explain the position dependence. This photodetector shows excellent potential for application in future nanoelectronics and optoelectronics systems. : Physics; Photonics; Optical Materials Subject Areas: Physics, Photonics, Optical Materials
机译:总结:有机金属钙钛矿三卤化(的OTP)是有希望的高性能光电检测器的光电子材料。然而,到现在为止,传统的多晶基于OTP的光检测器已证明有效的有限光感测范围。近日,大宗钙钛矿型单晶已经看到有位置敏感光电探测的潜力。在此,在第一次,我们证明通过在垂直于信道扫描在装置的聚焦激光束基于钙钛矿的单晶依赖于位置的光检测器。光电检测器显示出最佳的一次有效光感测距离可达毫米范围内。通过大小近的顺序在光束位置从0变化至950微米,载流子扩散长度的CH3NH2PbBr3可调性与激发激光强度的变化的光响应和光电流降低被证实。此外,基于光激发载流子的传输的数值模型被提出来解释的位置依赖性。这个探测器显示了未来纳米电子学和光电子系统应用优秀潜质。 :物理学;光子学;光学材料学科领域:物理学,光电子,光学材料

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