Bisquert Juan, Sánchez-Mateu Marc, Bou Agustín, Suwen Law Cheryl, Santos Abel
Instituto de Tecnología Química, Universitat Politècnica de València-Agencia Estatal Consejo Superior de Investigaciones Científicas), Av. dels Tarongers, 46022, València, Spain.
Institute of Advanced Materials (INAM), Universitat Jaume I, 12006, Castelló, Spain.
Chemphyschem. 2024 Dec 2;25(23):e202400265. doi: 10.1002/cphc.202400265. Epub 2024 Oct 4.
Iontronic fluidic ionic/electronic components are emerging as promising elements for artificial brain-like computation systems. Nanopore ionic rectifiers can be operated as a synapse element, exhibiting conductance modulation in response to a train of voltage impulses, thus producing programmable resistive states. We propose a model that replicates hysteresis, rectification, and time domain response properties, based on conductance modulation between two conducting modes and a relaxation time of the state variable. We show that the kinetic effects observed in hysteresis loops govern the potentiation phenomena related to conductivity modulation. To illustrate the efficacy of the model, we apply it to replicate rectification, hysteresis and conductance modulation of two different experimental systems: a polymer membrane with conical pores, and a blind-hole nanoporous anodic alumina membrane with a barrier oxide layer. We show that the time transient analysis of the model develops the observed potentiation and depression phenomena of the synaptic properties.
离子电子流体离子/电子组件正成为类脑人工计算系统中颇具前景的元件。纳米孔离子整流器可作为突触元件运行,在一系列电压脉冲作用下表现出电导调制,从而产生可编程电阻状态。我们基于两种导电模式之间的电导调制和状态变量的弛豫时间,提出了一个能复制滞后、整流和时域响应特性的模型。我们表明,在滞后回线中观察到的动力学效应支配着与电导率调制相关的增强现象。为说明该模型的有效性,我们将其应用于复制两个不同实验系统的整流、滞后和电导调制:一个具有锥形孔的聚合物膜,以及一个带有阻挡氧化层的盲孔纳米多孔阳极氧化铝膜。我们表明,该模型的时间瞬态分析揭示了突触特性中观察到的增强和抑制现象。