材料科学
神经形态工程学
光电流
光电子学
晶体管
光电效应
机制(生物学)
突触可塑性
纳米技术
计算机科学
化学
物理
电压
人工神经网络
量子力学
机器学习
生物化学
受体
作者
Cong Zhang,Mingxin Zhang,Fengyuan Lin,Guodong Zhao,Zhipeng Wei,Yanping Ni,Juntong Li,Hongyan Yu,Xiaoli Zhao,Yanhong Tong,Qingxin Tang,Yichun Liu
标识
DOI:10.1002/aelm.202300878
摘要
Abstract Light‐triggered synaptic plasticity (LTSP) induced by electron trapping in organic photoelectric synaptic transistors (OPSTs) offers potential prospects in neuromorphic wearable artificial intelligence. However, a consistent and universal comprehend for LTSP behaviors especially on oxygen effect in OPSTs is still a critical challenge hindering their practical applications. A mechanism on strong dependency between the oxygen‐induced and polar‐group electron trapping in OPSTs, is successfully unveiled in this study for the first time. And the interaction between the oxygen and polar dielectric interface can be enhanced by properly modulating the specific surface area of thin‐film semiconductors. This effectively binds the oxygen near conducting channel and further improves the trapping efficiency for photogenerated electrons, undergoing the time‐dependent photocurrent generation and subsequent prolonged decay, forming the typical LTSP behaviors. These experimental demonstrations differ from previous reports and therefore may contribute an innovative perspective in the design of functional layers for high‐performance OPST devices.
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