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Towards a quantitative description of solid electrolyte conductance switches

机译:迈向固体电解电导电导开关的定量描述

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摘要

We present a quantitative analysis of the steady-state electronic transport in a resistive switching device. The device is composed of a thin film of Ag2S (solid electrolyte) contacted by a Pt nano-contact acting as ion-blocking electrode, and a large-area Ag reference electrode. When applying a bias voltage both ionic and electronic transport occurs, and depending on the polarity it causes an accumulation of ions around the nano-contact. At small applied voltages (pre-switching) we observed this as a strongly nonlinear current-voltage curve, which is modeled using the Hebb-Wagner treatment for polarization of a mixed conductor. This model correctly describes the transport of the electrons within the polarized solid electrolyte in the steady-state up until the resistance switching, covering the entire range of non-stoichiometries, and including the supersaturation range just before the deposition of elemental silver. In this way, it is a step towards a quantitative understanding of the processes that lead to resistance switching.
机译:我们对电阻开关装置中的稳态电子传输进行了定量分析。该设备由用充当离子阻断电极的PT纳米接触接触的AG2S(固体电解质)的薄膜和大面积AG参考电极组成。当应用偏置电压时,离子和电子传输都会发生,并且取决于极性,它会导致纳米接触周围的离子积聚。在小的施加电压(预切口)下,我们将其视为强烈非线性电流 - 电压曲线,该曲线是使用HEBB-WAGNER处理对混合导体极化进行建模的。该模型正确地描述了稳态中极化固体电解质内的电子的传输,直到电阻切换为止,覆盖了整个非岩石介质的范围,并在元素银沉积之前包括过饱和范围。这样,这是朝着对导致阻力切换的过程的定量理解的一步。

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