材料科学
异质结
神经形态工程学
光电子学
双极扩散
运动检测
响应度
电压
晶体管
计算机科学
人工神经网络
光电探测器
运动(物理)
电气工程
人工智能
物理
等离子体
量子力学
工程类
作者
Xiaoting Zhu,Changsong Gao,Yiwen Ren,Xianghong Zhang,Enlong Li,Congyong Wang,Fangxu Yang,Jishan Wu,Wenping Hu,Huipeng Chen
标识
DOI:10.1002/adma.202301468
摘要
Light-stimulated optoelectronic synaptic devices are fundamental compositions of the neuromorphic vision system. However, there are still huge challenges to achieving both bidirectional synaptic behaviors under light stimuli and high performance. Herein, a bilayer 2D molecular crystal (2DMC) p-n heterojunction is developed to achieve high-performance bidirectional synaptic behaviors. The 2DMC heterojunction-based field effect transistor (FET) devices exhibit typical ambipolar properties and remarkable responsivity (R) of 3.58×104 A W-1 under weak light as low as 0.008 mW cm-2 . Excitatory and inhibitory synaptic behaviors are successfully realized by the same light stimuli under different gate voltages. Moreover, a superior contrast ratio (CR) of 1.53×103 is demonstrated by the ultrathin and high-quality 2DMC heterojunction, which transcends previous optoelectronic synapses and enables application for the motion detection of the pendulum. Furthermore, a motion detection network based on the device is developed to detect and recognize classic motion vehicles in road traffic with an accuracy exceeding 90%. This work provides an effective strategy for developing high-contrast bidirectional optoelectronic synapses and shows great potential in the intelligent bionic device and future artificial vision.
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