Flexible Memristor Devices Using Hybrid Polymer/Electrodeposited GeSbTe Nanoscale Thin Films

We report on the development of hybrid organic–inorganic material-based flexible memristor devices made by a fast and simple electrochemical fabrication method. The devices consist of a bilayer of poly­(methyl methacrylate) (PMMA) and Te-rich GeSbTe chalcogenide nanoscale thin films sandwiched betwe...

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Published inACS applied nano materials Vol. 5; no. 12; pp. 17711 - 17720
Main Authors Jaafar, Ayoub H., Meng, Lingcong, Zhang, Tongjun, Guo, Dongkai, Newbrook, Daniel, Zhang, Wenjian, Reid, Gillian, de Groot, C. H., Bartlett, Philip N., Huang, Ruomeng
Format Journal Article
LanguageEnglish
Published United States American Chemical Society 23.12.2022
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Summary:We report on the development of hybrid organic–inorganic material-based flexible memristor devices made by a fast and simple electrochemical fabrication method. The devices consist of a bilayer of poly­(methyl methacrylate) (PMMA) and Te-rich GeSbTe chalcogenide nanoscale thin films sandwiched between Ag top and TiN bottom electrodes on both Si and flexible polyimide substrates. These hybrid memristors require no electroforming process and exhibit reliable and reproducible bipolar resistive switching at low switching voltages under both flat and bending conditions. Multistate switching behavior can also be achieved by controlling the compliance current (CC). We attribute the switching between the high resistance state (HRS) and low resistance state (LRS) in the devices to the formation and rupture of conductive Ag filaments within the hybrid PMMA/GeSbTe matrix. This work provides a promising route to fabricate flexible memory devices through an electrodeposition process for application in flexible electronics.
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ISSN:2574-0970
2574-0970
DOI:10.1021/acsanm.2c03639