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Direct Observation of a Carbon Filament in Water-Resistant Organic Memory

机译:耐水有机记忆中碳丝的直接观察

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摘要

The memory for the Internet of Things (IoT) requires versatile characteristics such as flexibility, wearability, and stability in outdoor environments. Resistive random access memory (RRAM) to harness a simple structure and organic material with good flexibility can be an attractive candidate for IoT memory. However, its solution-oriented process and unclear switching mechanism are critical problems. Here we demonstrate iCVD polymer-intercalated RRAM (i-RRAM). i-RRAM exhibits robust flexibility and versatile wearability on any substrate. Stable operation of i-RRAM, even in water, is demonstrated, which is the first experimental presentation of water-resistant organic memory without any waterproof protection package. Moreover, the direct observation of a carbon filament is also reported for the first time using transmission electron microscopy, which puts an end to the controversy surrounding the switching mechanism. Therefore, reproducibility is feasible through comprehensive modeling. Furthermore, a carbon filament is superior to a metal filament in terms of the design window and selection of the electrode material. These results suggest an alternative to solve the critical issues of organic RRAM and an optimized memory type suitable for the IoT era.
机译:物联网(IoT)的内存需要多种特性,例如在室外环境中的灵活性,可穿戴性和稳定性。电阻随机存取存储器(RRAM)利用简单的结构和具有良好灵活性的有机材料可以成为IoT存储器的有吸引力的候选对象。但是,其面向解决方案的过程和不清楚的切换机制是关键问题。在这里,我们演示了iCVD聚合物插入的RRAM(i-RRAM)。 i-RRAM在任何基材上均具有强大的灵活性和广泛的耐磨性。演示了i-RRAM甚至在水中也能稳定运行的情况,这是不带任何防水保护包的防水有机存储器的首次实验演示。此外,首次报道了使用透射电子显微镜对碳丝的直接观察,这终结了围绕开关机构的争议。因此,通过全面建模可以实现可重复性。此外,就设计窗口和电极材料的选择而言,碳丝优于金属丝。这些结果为解决有机RRAM的关键问题和适用于IoT时代的优化内存类型提供了替代方案。

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