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Influence of top electrode on resistive switching effect of chitosan thin films

机译:上电极对壳聚糖薄膜电阻转换效应的影响

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Chitosan has attracted significant attention in the past decade because of its potential applications in water engineering, the food and nutrition technology, the textile and paper industries, and drug delivery. Recently, a particularly interesting application of chitosan has been proposed in transparent flexible electronic devices, including memristors and transistors. In this work, the resistive switching (RS) effect of chitosan thin films in a capacitor-like structure with Ag and Al as alternative top electrodes was studied. Both the devices showed a bistable RS effect under an external electric field with a high endurance of 10(2). The electrical conduction and RS mechanisms of chitosan-based devices were investigated. The trap-controlled space charge-limited current was responsible for electrical transport at the low-resistance state of both devices, while direct tunneling and Schottky emission at the high-resistance state were related to Ag/chitosan/fluorine-doped tin oxide (FTO) and Al/chitosan/FTO, respectively. The RS mechanism of the Ag/chitosan/FTO device was attributed to the formation and dissociation of Ag filaments through the dielectric layer, whereas the change in the barrier height at the Al and chitosan interface under an external electric field could control the RS mechanism of the Al/chitosan/FTO device.
机译:壳聚糖在水工程,食品和营养技术,纺织和造纸工业以及药物输送中的潜在应用在过去的十年中引起了极大的关注。最近,已经提出了壳聚糖在包括忆阻器和晶体管的透明柔性电子设备中特别有趣的应用。在这项工作中,研究了壳聚糖薄膜在以Ag和Al为替代顶部电极的电容器状结构中的电阻转换(RS)效应。两种器件均在具有10(2)的高耐久性的外部电场下显示出双稳态RS效应。研究了壳聚糖基器件的电导率和RS机理。陷阱控制的空间电荷限制电流负责两个器件在低电阻状态下的电传输,而在高电阻状态下的直接隧穿和肖特基发射与Ag /壳聚糖/氟掺杂的氧化锡(FTO)有关。 )和Al /壳聚糖/ FTO。 Ag /壳聚糖/ FTO器件的RS机理归因于Ag细丝通过介电层的形成和离解,而在外电场下Al和壳聚糖界面处势垒高度的变化可以控制Ag的壳聚糖RS机制。 Al /壳聚糖/ FTO设备。

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