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首页> 外文期刊>IEICE Transactions on Electronics >Optical Properties of Copper in Chalcogenide Materials Used in Programmable Metallization Cell Devices
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Optical Properties of Copper in Chalcogenide Materials Used in Programmable Metallization Cell Devices

机译:可编程金属化电池器件中硫族化物材料中铜的光学性质

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Programmable Metallization Cell (PMC) Random Access Memory is based on the electrochemical growth and removal of nanoscale metallic pathways in thin films of solid electrolytes. In this study, we investigate the nature of thin films formed by the photo doping of Cu into chalcogenide materials for use in programmable metallization cell devices. These devices rely on metal ion transport in the film so produced to create electrically programmable resistance states. The results imply that a Cu-rich phase separates owing to the reaction of Cu with free atoms from chalcogenide materials.
机译:可编程金属化电池(PMC)随机存取存储器基于固体电解质薄膜中纳米级金属通道的电化学生长和去除。在这项研究中,我们研究了通过将铜光掺杂到硫族化物材料中以形成可编程金属化电池器件而形成的薄膜的性质。这些设备依靠如此生产的薄膜中的金属离子传输来创建电可编程电阻状态。结果暗示由于Cu与来自硫族化物材料的自由原子的反应,富Cu相分离。

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