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Finding Oxygen Reservoir by Using Extremely Small Test Cell Structure for Resistive Random Access Memory with Replaceable Bottom Electrode

机译:通过使用极小的测试单元结构寻找可替换底电极的电阻性随机存取存储器中的氧气储层

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摘要

Although the presence of an oxygen reservoir (OR) is assumed in many models that explain resistive switching of resistive random access memory (ReRAM) with electrode/metal oxide (MO)/electrode structures, the location of OR is not clear. We have previously reported a method, which involved the use of an AFM cantilever, for preparing an extremely small ReRAM cell that has a removable bottom electrode (BE). In this study, we used this cell structure to specify the location of OR. Because an anode is often assumed to work as OR, we investigated the effect of changing anodes without changing the MO layer and the cathode on the occurrence of reset. It was found that the reset occurred independently of the catalytic ability and Gibbs free energy (ΔG) of the anode. Our proposed structure enabled to determine that the reset was caused by repairing oxygen vacancies of which a filament consists due to the migration of oxygen ions from the surrounding area when high ΔG anode metal is used, whereas by oxidizing the anode due to the migration of oxygen ions from the MO layer when low ΔG anode metal is used, suggesting the location of OR depends on ΔG of the anode.
机译:尽管在许多模型中假设存在氧气储集器(OR),这些模型解释了具有电极/金属氧化物(MO)/电极结构的电阻随机存取存储器(ReRAM)的电阻切换,但是OR的位置尚不清楚。我们先前已经报道了一种方法,该方法涉及使用AFM悬臂来制备具有可移动底部电极(BE)的超小型ReRAM单元。在这项研究中,我们使用这种细胞结构来指定OR的位置。因为通常假定阳极用作OR,所以我们研究了在不更改MO层和阴极的情况下更改阳极而对复位产生的影响。发现复位发生与阳极的催化能力和吉布斯自由能(ΔG)无关。我们提出的结构能够确定重置是由于使用高ΔG阳极金属时,由于氧离子从周围区域的迁移,修复了由细丝组成的氧空位所致,而由于氧的迁移而使阳极氧化而导致的当使用低ΔG阳极金属时,来自MO层的离子,这表明OR的位置取决于阳极的ΔG。

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