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Flexible DPPT‑TT/PEO Fiber‑Exploiting Electro‑optical Synaptic Transistor for Artificial Withdrawal Reflex Arc 被引量:1
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作者 Shangda Qu Jiaqi Liu +2 位作者 Jiahe Hu Lin Sun Wentao Xu 《Advanced Fiber Materials》 SCIE EI CAS 2024年第2期401-413,共13页
An artificial withdrawal reflex arc that can realize neuromorphic tactile perception,neural coding,information processing,and real-time responses was fabricated at the device level without dependence on algorithms.As ... An artificial withdrawal reflex arc that can realize neuromorphic tactile perception,neural coding,information processing,and real-time responses was fabricated at the device level without dependence on algorithms.As an extended application,the artificial reflex arc was used to perform an object-lifting task based on tactile commands,and it can easily lift a 200-g weight.A fiber-exploiting electro-optical synaptic transistor(FEST)was fabricated to emulate synaptic plasticity modulated by electrical or optical spikes.Due to an ultrahigh spike duration-dependent plasticity index(~12,651%),the FEST was applied in electro-optical encrypted communication tasks and effectively increased signal recognition accuracy.In addition,the FEST has excellent bending resistance(bending radii=0.6-1.4 cm,bending cycles>2000)and stable illumination responses for a wide range of incident angles(0°-360°),demonstrating its potential applicability in wearable electronics.This work presents new design strategies for complete artificial reflex arcs and wearable neuromorphic devices,which may have applications in bioinspired artificial intelligence,human-machine interaction,and neuroprosthetics. 展开更多
关键词 DPPT-TT/PEO fibers Flexible synaptic transistors Synaptic plasticity artificial withdrawal reflex arc
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