神经形态工程学
材料科学
光电子学
肖特基二极管
肖特基势垒
计算机科学
二极管
记忆电阻器
平面的
图层(电子)
纳米技术
电子工程
人工神经网络
人工智能
工程类
计算机图形学(图像)
作者
Hengyuan Wang,Sai Jiang,Ziqian Hao,Xin Xu,Mengjiao Pei,Jianhang Guo,Qijing Wang,Yating Li,Jiaming Chen,Jun Xu,Xinran Wang,Junzhuan Wang,Yi Shi,Yun Li
标识
DOI:10.1021/acs.jpclett.2c00176
摘要
Optoelectronic synapses have been utilized as neuromorphic vision sensors for image preprocessing in artificial visual systems. Self-powered optoelectronic synapses, which can directly convert optical power into electrical power, are promising for practical applications. The Schottky junction tends to be a promising candidate as the energy source for electrical operations. However, fully utilizing the potential of Schottky barriers is still challenging. Herein, organic self-powered optoelectronic synapses with planar diode architecture are fabricated, which can simultaneously sense and process ultraviolet (UV) signals. The photovoltaic operations are facilitated by the built-in potential originating from the molecular-layer-defined asymmetric Schottky contacts. Diverse synaptic behaviors under UV light stimulation without external power supplies are facilitated by the interfacial carrier-capturing layer, which emulates the membranes of synapses. Furthermore, retina-inspired image preprocessing functions are demonstrated on the basis of synaptic plasticity. Therefore, our devices provide the potential for the development of power-efficient and advanced artificial visual systems.
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