Electric Field Control of Phase Transition and Tunable Resistive Switching in SrFeO 2.5 .

ACS applied materials & interfaces(2019)

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摘要
SrFeO (SFO ) compounds exhibit ionic conduction and oxygen-related phase transformation, having potential applications in solid oxide fuel cells, smart windows, and memristive devices. The phase transformation in SFO typically requires a thermal annealing process under various pressure conditions, hindering their practical applications. Here, we have achieved a reversible phase transition from brownmillerite (BM) to perovskite (PV) in SrFeO (SFO) films through ionic liquid (IL) gating. The real-time phase transformation is imaged using in situ high-resolution transmission electron microscopy. The magnetic transition in SFO is identified by fabricating an assisted LaSrMnO (LSMO) bottom layer. The IL-gating-converted PV phase of a SrFeO (SFO) layer shows a ferromagnetic-like behavior but applies a huge pinning effect on LSMO magnetic moments, which consequently leads to a prominent exchange bias phenomenon, suggesting an uncompensated helical magnetic structure of SFO. On the other hand, the suppression of both magnetic and exchange coupling signals for a BM-phased SFO layer elucidates its fully compensated G-type antiferromagnetic nature. We also demonstrated that the phase transition by IL gating is an effective pathway to tune the resistive switching parameters, such as set, reset, and high/low-resistance ratio in SFO-based resistive random-access memory devices.
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关键词
SrFeO2.5,SrFeO3,electric field control of phase transition,ionic liquid gating,tunable resistive switching
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