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通过电子供体控制原位形成梯度带隙可调谐钙钛矿用于超高速颜色/光谱敏感光电探测器。

In Situ Formed Gradient Bandgap-Tunable Perovskite for Ultrahigh-Speed Color/Spectrum-Sensitive Photodetectors via Electron-Donor Control.

作者信息

Sun Haoxuan, Tian Wei, Wang Xianfu, Deng Kaimo, Xiong Jie, Li Liang

机构信息

State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu, 610054, P. R. China.

School of Physical Science and Technology, Center for Energy Conversion Materials & Physics (CECMP), Soochow University, Suzhou, 215006, P. R. China.

出版信息

Adv Mater. 2020 Apr;32(14):e1908108. doi: 10.1002/adma.201908108. Epub 2020 Feb 20.

Abstract

Integration of various photodetectors with different light-sensitive materials and detection capacity is an inevitable way to achieve entire color/spectrum detection. However, the uneven capacity of each photodetector would drag the overall performance behind, especially the response speed. A response time down to nanosecond level has not previously been reported for a filter-free color/spectrum-sensitive photodetector, as far as is known. Here, a self-powered filterless color-sensitive photodetection array based on an in situ formed gradient perovskite absorber film with continuously tunable bandgap is demonstrated. Ultrahigh-speed response at nanosecond level is achieved in all the ingredient photodetectors. The junction capacitance being influenced by carrier concentration in the absorber is identified to be responsible for the detection speed. Without any optic or mechanical supporting system, the designed color detector exhibits an external quantum efficiency (EQE) up to 94% and a high spectral resolution of around 80 nm for the whole visible spectrum. This work offers a guidance to achieve fast response of perovskite-based photodetectors from the point of view of carrier-donor control and demonstrates a new avenue to establish color-sensitive photodetectors/spectrometers.

摘要

将具有不同光敏材料和检测能力的各种光电探测器集成在一起是实现全色/光谱检测的必然途径。然而,每个光电探测器的能力不均会拖累整体性能,尤其是响应速度。据所知,此前尚未有关于无滤光片的颜色/光谱敏感光电探测器的响应时间低至纳秒级的报道。在此,展示了一种基于原位形成的具有连续可调带隙的梯度钙钛矿吸收膜的自供电无滤光片颜色敏感光电探测阵列。所有组成的光电探测器都实现了纳秒级的超高速响应。吸收体中载流子浓度对结电容的影响被确定为检测速度的原因。无需任何光学或机械支撑系统,所设计的颜色探测器的外量子效率(EQE)高达94%,并且对整个可见光谱具有约80 nm的高光谱分辨率。这项工作从载流子供体控制的角度为实现基于钙钛矿的光电探测器的快速响应提供了指导,并展示了建立颜色敏感光电探测器/光谱仪的新途径。

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