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Ultrasensitive broadband phototransistors based on perovskite/organic-semiconductor vertical heterojunctions

机译:基于钙钛矿/有机半导体垂直异质结的超灵敏宽带光电晶体管

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摘要

Organolead halide perovskites have emerged as the most promising materials for various optoelectronic devices, especially solar cells, because of their excellent optoelectronic properties. Here, we present the first report of low-voltage high-gain phototransistors based on perovskite/organic-semiconductor vertical heterojunctions, which show ultrahigh responsivities of similar to 10(9)A W-1 and specific detectivities of similar to 10(14) Jones in a broadband region from the ultraviolet to the near infrared. The high sensitivity of the devices is attributed to a pronounced photogating effect that is mainly due to the long carrier lifetimes and strong light absorption in the perovskite material. In addition, flexible perovskite photodetectors have been successfully prepared via a solution process and show high sensitivity as well as excellent flexibility and bending durability. The high performance and facile solution-based fabrication of the perovskite/organic-semiconductor phototransistors indicate their promise for potential application for ultrasensitive broadband photodetection.
机译:有机油卤化物钙钛矿由于其优异的光电性能,已成为各种光电器件(尤其是太阳能电池)中最有前途的材料。在这里,我们提出了基于钙钛矿/有机半导体垂直异质结的低压高增益光电晶体管的第一个报告,该晶体管显示出类似于10(9)A W-1的超高响应度和类似于10(14)的特定检测率。琼斯在从紫外线到近红外的宽带区域。器件的高灵敏度归因于显着的光选通效果,这主要归因于钙钛矿材料的长载流子寿命和强光吸收。另外,通过溶液法成功地制备了柔性钙钛矿光电探测器,并显示出高灵敏度以及出色的柔性和弯曲耐久性。钙钛矿/有机半导体光电晶体管的高性能和基于解决方案的制造表明它们有望用于超灵敏宽带光电检测。

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