神经形态工程学
钙钛矿(结构)
材料科学
光电流
卤化物
光电二极管
适应(眼睛)
光电探测器
光电子学
结晶学
化学
人工神经网络
光学
计算机科学
物理
人工智能
无机化学
作者
Seongin Hong,Seung Hee Choi,Jongsun Park,Hocheon Yoo,Joo Youn Oh,E. H. Hwang,Dae Ho Yoon,Sunkook Kim
出处
期刊:ACS Nano
[American Chemical Society]
日期:2020-07-06
卷期号:14 (8): 9796-9806
被引量:115
标识
DOI:10.1021/acsnano.0c01689
摘要
Sensory adaptation is an essential part of biological neural systems for sustaining human life. Using the light-induced halide phase segregation of CsPb(Br1-xIx)3 perovskite, we introduce neuromorphic phototransistors that emulate human sensory adaptation. The phototransistor based on a hybrid structure of perovskite and transition-metal dichalcogenide (TMD) emulates the sensory adaptation in response to a continuous light stimulus, similar to the neural system. The underlying mechanism for the sensory adaptation is the halide segregation of the mixed halide perovskites. The phase separation under visible-light illumination leads to the segregation of I and Br into separate iodide- and bromide-rich domains, significantly changing the photocurrent in the phototransistors. The devices are reversible upon the removal of the light stimulation, resulting in near-complete recovery of the photosensitivity before the phase segregation (sensitivity recovery of 96.65% for 5 min rest time). The proposed phototransistor based on the perovskite-TMD hybrid structure can be applied to other neuromorphic devices such as neuromorphic photonic devices, intelligent sensors, and selective light-detecting image sensors.
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