Nonpolar Resistive Switching in Ag@TiO 2 Core-Shell Nanowires

Nonpolar resistive switching (RS), a combination of bipolar and unipolar RS, is demonstrated for the first time in a single nanowire (NW) system. Exploiting Ag@TiO core-shell (CS) NWs synthesized by postgrowth shell formation, the switching mode is controlled by adjusting the current compliance effe...

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Veröffentlicht in:ACS applied materials & interfaces 2017-11, Vol.9 (44), p.38959-38966
Hauptverfasser: Manning, Hugh G, Biswas, Subhajit, Holmes, Justin D, Boland, John J
Format: Artikel
Sprache:eng
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Zusammenfassung:Nonpolar resistive switching (RS), a combination of bipolar and unipolar RS, is demonstrated for the first time in a single nanowire (NW) system. Exploiting Ag@TiO core-shell (CS) NWs synthesized by postgrowth shell formation, the switching mode is controlled by adjusting the current compliance effectively, tailoring the electrical polarity response. We demonstrate ON/OFF ratios of 10 and 10 for bipolar and unipolar modes, respectively. In the bipolar regime, retention times could be controlled up to 10 s, and in the unipolar mode, >10 s was recorded. We show how the unique dual-mode switching behavior is enabled by the defect-rich polycrystalline material structure of the TiO shell and the interaction between the Ag core and the Ag electrodes. These results provide a foundation for engineering nonpolar RS behaviors for memory storage and neuromorphic applications in CSNW structures.
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.7b10666