首页> 美国卫生研究院文献>Scientific Reports >Electro-Forming and Electro-Breaking of Nanoscale Ag Filaments for Conductive-Bridging Random-Access Memory Cell using Ag-Doped Polymer-Electrolyte between Pt Electrodes
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Electro-Forming and Electro-Breaking of Nanoscale Ag Filaments for Conductive-Bridging Random-Access Memory Cell using Ag-Doped Polymer-Electrolyte between Pt Electrodes

机译:使用Pt电极之间的Ag掺杂聚合物电解质用于导电桥接随机存取存储单元的纳米级Ag细丝的电形成和电断裂

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摘要

Ag-doped polymer (polyethylene oxide: PEO) conductive-bridging-random-access-memory (CBRAM) cell using inert Pt electrodes is a potential electro-forming free CBRAM cells in which electro-forming and electro-breaking of nanoscale (16~22-nm in diameter) conical or cylindrical Ag filaments occurs after a set or reset bias is applied. The dependency of the morphologies of the Ag filaments in the PEO polymer electrolyte indicates that the electro-formed Ag filaments bridging the Pt cathode and anode are generated by Ag+ ions drifting in the PEO polymer electrolyte toward the Pt anode and that Ag dendrites grow via a reduction process from the Pt anode, whereas electro-breaking of Ag filaments occurs through the oxidation of Ag atoms in the secondary dendrites and the drift of Ag+ ions toward the Pt cathode. The Ag doping concentration in the PEO polymer electrolyte determines the bipolar switching characteristics; i.e., the set voltage slightly decreases, while the reset voltage and memory margin greatly increases with the Ag doping concentration.
机译:使用惰性Pt电极的掺Ag聚合物(聚环氧乙烷:PEO)导电桥随机访问存储器(CBRAM)电池是一种潜在的无电形成CBRAM电池,其中电形成和电击破了纳米级(16〜施加设置或重置偏压后,会出现圆锥形或圆柱形Ag细丝(直径22 nm)。 PEO聚合物电解质中Ag丝形态的依赖性表明,桥接Pt阴极和阳极的电铸Ag丝是由Ag +离子在PEO聚合物电解质中向Pt阳极漂移而生成的,并且Ag树枝状晶体通过还原过程从Pt阳极开始,而银细丝的电断裂是通过次级树枝状晶体中Ag原子的氧化和Ag + 离子向Pt阴极的漂移而发生的。 PEO聚合物电解质中的Ag掺杂浓度决定了双极开关特性;即,设置电压略微降低,而复位电压和存储余量随着Ag掺杂浓度的增加而大大增加。

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