三苯胺
神经形态工程学
小提琴手
电致变色
材料科学
突触可塑性
计算机科学
纳米技术
光电子学
化学
光化学
人工神经网络
物理化学
机器学习
生物化学
受体
电极
作者
Zhao Zhizheng,Qiang Che,Kexin Wang,Mohamed Elkhouly,Jiaxuan Liu,Yubin Fu,Bin Zhang,Yu Chen
出处
期刊:iScience
[Elsevier]
日期:2022-01-01
卷期号:25 (1): 103640-103640
被引量:9
标识
DOI:10.1016/j.isci.2021.103640
摘要
Polymer memristors are preeminent candidates for low-power edge computing paradigms. Poly[chalcogenoviologen-alt-triphenylamine] (PCVTPA) has been synthesized by direct coupling of chalcogeno-viologen as electron acceptor and 4-(bromomethyl)-N-(4-(bromo-methyl)phenyl)-N-phenylaniline as electron donor. The introduction of chalcogen atoms (S, Se, Te) into viologen scaffolds can greatly improve electrical conductive, electrochemical, and electrochromic properties of the materials when compared with the conventional viologens. Taking PTeVTPA as an example, the as-fabricated electronic device with a configuration of Al/PTeVTPA/ITO exhibits excellent multilevel storage and history-dependent memristive switching performance. Associated with the unique memristive behavior, the PTeVTPA-based device can not only be used to emulate the synaptic potentiation/depression, the human's learning and memorizing functions, and the transition from short-term synaptic plasticity to long-term plasticity but also carry out decimal arithmetic operations as well. This work will be expected to offer a train of new thought for constructing high-performance synaptic biomimicking and neuromorphic computing system in the near future.
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