材料科学
记忆电阻器
纳米颗粒
氧化铈
纳米技术
氧化物
基质(化学分析)
碳纳米颗粒
碳纤维
铈
电子工程
复合材料
冶金
复合数
工程类
作者
Priyanka Sahu,Himadri Nandan Mohanty,Suman Roy,Smrutirekha Sahoo,Rajanigandha Barik,Alok Kumar,Ashis Kumar Panigrahi,Roshan Padhan,Dibakar Sahoo,Satyaprakash Sahoo,Satyaprakash Sahoo,Satyaprakash Sahoo
标识
DOI:10.1021/acsami.5c19293
摘要
The integration of digital and analog resistive switching (RS) within a single device holds significant promise for multifunctional memory and neuromorphic computing applications. In this work, we present a CeO2-rGO nanocomposite-based memristor exhibiting bipolar RS behavior. The active layer, synthesized via a hydrothermal method, leverages the high oxygen vacancy concentration of CeO2 and the excellent conductivity of rGO to achieve a relatively low voltage, forming free switching with an enhanced device stability. The fabricated CeO2-rGO memristor device shows a large memory window and reliable endurance and retention time. Importantly, the coexistence of both digital and analog switching enables multilevel conductance states, essential for high-density storage and synaptic emulation. The possible mechanism for the presence of both switching behaviors is addressed by considering cation migration and oxygen vacancy redistribution. Additionally, the device exhibits a voltage pulse response during read-write-erase cycles for rewritable memory operations. These findings indicate CeO2-rGO nanocomposites could be a potential candidate for next-generation nonvolatile memory devices that bridge conventional data storage and neuromorphic functionalities.
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