材料科学
记忆电阻器
离子键合
变形(气象学)
磁滞
离子电导率
氧化物
导电体
纳米技术
电化学
复合材料
离子
电极
凝聚态物理
电子工程
物理化学
工程类
物理
电解质
化学
冶金
量子力学
作者
Panithan Sriboriboon,Huimin Qiao,Seunghun Kang,Changhyo Sun,Yunseok Kim
标识
DOI:10.1002/adfm.202103145
摘要
Abstract Ionically mediated phenomena underpin the functioning of various devices, including batteries, solid oxide fuel cells, memristors, and neuromorphic devices. The ionic behavior corresponding to ionically mediated phenomena causes not only variations in the electrical properties but also mechanical deformation, which is crucial for device reliability. However, the interrelation between ionically mediated electrical properties and mechanical deformation has not been elucidated yet. This study investigates ionically mediated mechanical deformation accompanied by memristive switching in a TiO 2 single crystal through simultaneous conductive atomic force microscopy and electrochemical strain microscopy. A comprehensive analysis indicates the existence of a relationship between mechanical deformation and memristive switching based on the ionic behavior. Furthermore, an ionic state variable is used to simplify the interrelation between the electrochemical strain hysteresis and memristive switching associated with applied voltage. This study provides insights on the ionic behavior and can be extended to other systems for the general analysis of the relationship between mechanical deformation and electrical properties.
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