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Interfacial Control via Reversible Ionic Motion in Battery‐Like Magnetic Tunnel Junctions

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This work was supported by the Natural Sciences and Engineering Research Council of Canada (NSERC) Discovery Grant RGPIN-04178, the Ministry of Research, Innovation and Science (MRIS) Early Researcher Award, the… Click to show full abstract

This work was supported by the Natural Sciences and Engineering Research Council of Canada (NSERC) Discovery Grant RGPIN-04178, the Ministry of Research, Innovation and Science (MRIS) Early Researcher Award, the National Natural Science Foundation of China (NSFC) Grant Nos. 11504192, 11674187, and 52001232, Shanghai Sailing Program (20YF1452000), the Shanghai Scientific and Technological Innovation Project (20ZR1460200) and the Fundamental Research Funds for the Central Universities. The work was also in part supported by the Canada First Research Excellence Fund. Work at MIT was supported by Army Research Office (W911NF-20-2-0061), the National Science Foundation (NSF-DMR 1700137), Office of Naval Research (N00014-20-1-2306) and Center for Integrated Quantum Materials (NSF-DMR 1231319) for financial support.

Keywords: ionic motion; research; via reversible; control via; interfacial control; reversible ionic

Journal Title: Advanced Electronic Materials
Year Published: 2021

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