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Electrochemical Oxidation Induced Multi-Level Memory in Carbon-Based Resistive Switching Devices

机译:碳基电阻开关装置中的电化学氧化诱导的多级存储

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摘要

In this work, we report for the first time the electrochemical oxidation as a technique to improve the electrical performances of carbon-based resistive switching devices. The devices obtained through the anodic oxidation of carbon-structures possess superior electrical performances i.e. a 3-level memory behavior and an ON/OFF ratio two order of magnitude higher than the non-oxidized carbon-based devices. It is demonstrated that the chemical composition of the carbon structures (i.e. percentage of oxygen groups, sp2 and sp3 carbon atoms) plays a key role in the improvement of the carbon-based devices. The electrochemical oxidation allows the possibility to control the oxidation degree, and therefore, to tailor the devices electrical performances. We demonstrated that the resistive switching behavior in the electrochemically oxidized devices is originated from the formation of conductive filament paths, which are built from the oxygen vacancies and structural defects of the anodic oxidized carbon materials. The novelty of this work relies on the anodic oxidation as a time- and cost-effective technique that can be employed for the engineering and improvement of the electrical performances of next generation carbon-based resistive switching devices.
机译:在这项工作中,我们首次报告了电化学氧化作为一种​​改善碳基电阻开关器件电性能的技术。通过碳结构的阳极氧化获得的器件具有优异的电性能,即三级存储性能和开/关比比未氧化的碳基器件高两个数量级。结果表明,碳结构的化学组成(即氧基团的百分比,sp 2 和sp 3 碳原子)在改善碳中起关键作用基于设备。电化学氧化使得可以控制氧化程度,因此可以调节器件的电性能。我们证明了在电化学氧化装置中的电阻转换行为是由导电细丝路径的形成引起的,导电细丝路径是由氧空位和阳极氧化碳材料的结构缺陷所建立的。这项工作的新颖之处在于,阳极氧化是一种节省时间和成本的技术,可用于工程设计和改进下一代碳基电阻开关器件的电气性能。

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