材料科学
突触可塑性
铟
晶体管
氧化物
光电子学
纳米技术
生物物理学
电压
生物
电气工程
生物化学
受体
工程类
冶金
作者
Chang Jin Wan,Yanghui Liu,Li Qiang Zhu,Ping Feng,Yi Shi,Qing Wan
标识
DOI:10.1021/acsami.5b12726
摘要
In the biological nervous system, synaptic plasticity regulation is based on the modulation of ionic fluxes, and such regulation was regarded as the fundamental mechanism underlying memory and learning. Inspired by such biological strategies, indium–gallium–zinc-oxide (IGZO) electric-double-layer (EDL) transistors gated by aqueous solutions were proposed for synaptic behavior emulations. Short-term synaptic plasticity, such as paired-pulse facilitation, high-pass filtering, and orientation tuning, was experimentally emulated in these EDL transistors. Most importantly, we found that such short-term synaptic plasticity can be effectively regulated by alcohol (ethyl alcohol) and salt (potassium chloride) additives. Our results suggest that solution gated oxide-based EDL transistors could act as the platforms for short-term synaptic plasticity emulation.
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