神经形态工程学
材料科学
光电子学
突触后电流
光电导性
突触重量
光子学
突触
兴奋性突触后电位
计算机科学
光开关
能源消耗
解码方法
纳米技术
纳米团簇
逻辑门
突触后电位
光电流
干扰(通信)
光电探测器
微型加热器
电子线路
阳极
光刺激
波长
非易失性存储器
电极
光学计算
超短脉冲
光电二极管
作者
Weiwei Li,Zhao Sha,Junxin Zhou,Boya Sun,Qing Sun,Xinghan Li,Jing Yao,Feng Gao,Zhitao Shao,Wei Feng
出处
期刊:Small
[Wiley]
日期:2026-07-21
卷期号:: e74636-e74636
摘要
ABSTRACT Emulating biological multispectral vision with photoelectrochemical (PEC) synapses not only provides a promising strategy to overcome the energy consumption and latency constraints of conventional machine vision sensors, but also offers potential applications in aqueous neuromorphic systems. Herein, we report a two‐terminal PEC synapse based on ZnIn mixed‐metal oxide (MMO) that demonstrates UV‐visible photoresponse and wavelength sensitivity. Versatile synaptic behaviors, including excitatory postsynaptic current (EPSC), paired‐pulse facilitation, short‐term plasticity, long‐term plasticity, and the learning‐forgetting‐relearning process, are reliably emulated. The built‐in electric field enhances the separation and transport of photogenerated carriers, leading to higher photoresponse, and slow deionization processes of V O realize persistent photoconductivity and synaptic plasticity. Furthermore, the device exhibits wavelength‐dependent photoresponse and EPSC decay characteristics. By leveraging this feature, the device enables encrypted optical image transmission. Last, we successfully demonstrate binary information decoding and reconfigurable optically controlled logic gates (“AND” and “OR”). This study provides new insights for the development of advanced neuromorphic systems.
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