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Controlling Ion Conductance and Channels to Achieve Synaptic-like Frequency Selectivity

机译:控制离子电导率和通道以实现类似突触的频率选择性

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摘要

Enhancing ion conductance and controlling transport pathway in organic electrolyte could be used to modulate ionic kinetics to handle signals. In a Pt/Poly(3-hexylthiophene-2,5-diyl)/Polyethylene+LiCF3SO3/Pt hetero-junction, the electrolyte layer handled at high temperature showed nano-fiber microstructures accompanied with greatly improved salt solubility. Ions with high mobility were confined in the nano-fibrous channels leading to the semiconducting polymer layer, which is favorable for modulating dynamic doping at the semiconducting polymer/electrolyte interface by pulse frequency. Such a device realized synaptic-like frequency selectivity, i.e., depression at low frequency stimulation but potentiation at high-frequency stimulation.
机译:增强离子电导率并控制有机电解质中的传输途径可用于调节离子动力学以处理信号。在Pt /聚(3-己基噻吩-2,5-二基)/聚乙烯+ LiCF3SO3 / Pt异质结中,在高温下处理的电解质层显示出纳米纤维的微观结构,同时盐溶解度大大提高。具有高迁移率的离子被限制在通向半导体聚合物层的纳米纤维通道中,这有利于通过脉冲频率在半导体聚合物/电解质界面处调制动态掺杂。这样的设备实现了类似突触的频率选择性,即,在低频刺激下为抑郁,而在高频刺激下为增强。

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