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揭开透明双极氧化铟锡/二氧化硅/氧化铟锡电阻式开关存储器中的铟丝革命

Uncovering the Indium Filament Revolution in Transparent Bipolar ITO/SiO/ITO Resistive Switching Memories.

作者信息

Qian Kai, Han Xu, Li Huakai, Chen Tupei, Lee Pooi See

机构信息

School of Materials Science and Engineering , Nanyang Technological University , 50 Nanyang Avenue , 639798 , Singapore.

School of Microelectronics , Shandong University , Jinan 250100 , China.

出版信息

ACS Appl Mater Interfaces. 2020 Jan 29;12(4):4579-4585. doi: 10.1021/acsami.9b16325. Epub 2020 Jan 13.

Abstract

Transparent resistive switching random access memory (ReRAM) is of interest for the future integrated invisible circuitry. However, poor understanding of its working mechanism in transparent ReRAMs with the indium tin oxide (ITO) electrode is still a critical problem and will hinder its widespread applications. To reveal the actual working mechanism in transparent ReRAMs with the ITO electrode, we investigate the transparent ITO/SiO/ITO memory devices (∼82% transmittance in the visible region) and compare it with ITO/SiO/Au memory devices, which both can exhibit reproducible bipolar switching. The indium (In) filament evolution, which accounts for the bipolar switching behaviors in the ITO/SiO/ITO (or Au) memories, is directly observed using transmission electron microscopy on samples with different memory states (electroformed, ON, and OFF). These studies uncover the microscopic mechanism behind the bipolar switching in SiO-based ReRAM devices with the ITO electrode, providing a general guidance for the design of high-performance ReRAMs with large scalability and high endurance.

摘要

透明电阻式开关随机存取存储器(ReRAM)对于未来的集成隐形电路具有重要意义。然而,对于具有氧化铟锡(ITO)电极的透明ReRAMs其工作机制的了解不足仍是一个关键问题,这将阻碍其广泛应用。为了揭示具有ITO电极的透明ReRAMs的实际工作机制,我们研究了透明ITO/SiO/ITO存储器件(在可见光区域的透过率约为82%),并将其与ITO/SiO/Au存储器件进行比较,这两种器件都能表现出可重复的双极开关特性。利用透射电子显微镜对处于不同存储状态(电形成、导通和关断)的样品直接观察了铟(In)细丝的演变,这解释了ITO/SiO/ITO(或Au)存储器中的双极开关行为。这些研究揭示了具有ITO电极的基于SiO的ReRAM器件中双极开关背后的微观机制,为设计具有高可扩展性和高耐久性的高性能ReRAMs提供了一般性指导。

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