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Effect of cation amount in the electrolyte on characteristics of Ag/TiO2 based threshold switching devices

机译:阳离子量在电解质中的影响在Ag / TiO2基于阈值开关装置的特性

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In this study, we investigate the effect of cation amount in an electrolyte on Ag/TiO2 based threshold switching (TS) devices, based on field-induced nucleation theory. For this purpose, normal Ag/TiO2 , annealed Ag/TiO2, and AgTe/TiO2 based TS devices are prepared, which have different cation amounts in their electrolytes during the switching process. First, we find that all of the prepared TS devices follow the field-induced nucleation theory with different nucleation barrier energy (W-0), by investigating the delay-time dependency at various voltages and temperatures. Based on the investigation, we reveal that the amount of cations in the electrolyte during the switching process is the control parameter that affects the W-0 values, which are found to be inversely proportional to the turn-off speed of the TS devices. This implies that the turn-off speed of the TS devices can be modulated by controlling the amount of cations in the matrix.
机译:在该研究中,基于现场诱导的成核理论,研究了阳离子量在Ag / TiO2基于阈值开关(TS)器件上的电解质中的影响。 为此目的,制备正常的Ag / TiO 2,退火Ag / TiO 2和基于Agte / TiO 2的TS器件,在切换过程中,它们在其电解质中具有不同的阳离子量。 首先,我们发现所有制备的TS器件都通过在各种电压和温度下研究延迟时间依赖性来遵循具有不同成核屏障能量(W-0)的现场引起的成核理论。 基于调查,我们揭示了切换过程中电解质中的阳离子的量是影响W-0值的控制参数,该控制参数被发现与TS器件的关闭速度成反比。 这意味着可以通过控制矩阵中的阳离子量来调制TS器件的关闭速度。

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