记忆电阻器
计算机科学
电阻随机存取存储器
遗忘
欧姆接触
仿真
纳米技术
电压
材料科学
电子工程
电气工程
工程类
图层(电子)
语言学
哲学
经济增长
经济
作者
Shaochuan Chen,Zhen Yang,Heinrich Hartmann,Astrid Besmehn,Yuchao Yang,Ilia Valov
标识
DOI:10.1038/s41467-025-57543-w
摘要
Developing versatile and reliable memristive devices is crucial for advancing future memory and computing architectures. The years of intensive research have still not reached and demonstrated their full horizon of capabilities, and new concepts are essential for successfully using the complete spectra of memristive functionalities for industrial applications. Here, we introduce two-terminal ohmic memristor, characterized by a different type of switching defined as filament conductivity change mechanism (FCM). The operation is based entirely on localized electrochemical redox reactions, resulting in essential advantages such as ultra-stable binary and analog switching, broad voltage stability window, high temperature stability, high switching ratio and good endurance. The multifunctional properties enabled by the FCM can be effectively used to overcome the catastrophic forgetting problem in conventional deep neural networks. Our findings represent an important milestone in resistive switching fundamentals and provide an effective approach for designing memristive system, expanding the horizon of functionalities and neuroscience applications.
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