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Reversible post-breakdown conduction in aluminum oxide-polymer capacitors

机译:氧化铝-聚合物电容器中的可逆击穿后传导

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摘要

Aluminum/Al2O3/polymer/metal capacitors submitted to a low-power constant current stress undergo dielectric breakdown. The post-breakdown conduction is metastable, and over time the capacitors recover their original insulating properties. The decay of the conduction with time follows a power law (1/t) α . The magnitude of the exponent α can be raised by application of an electric field and lowered to practically zero by optical excitation of the polyspirofluorene polymer. The metastable conduction is attributed to formation of metastable pairs of oppositely charged defects across the oxide-polymer interface, and the self-healing is related to resistive switching.
机译:承受低功率恒定电流应力的铝/ Al2O3 /聚合物/金属电容器会发生介电击穿。击穿后的传导是亚稳态的,随着时间的流逝,电容器将恢复其原始绝缘性能。传导随时间的衰减遵循幂定律(1 / t)α。指数α的大小可以通过施加电场来提高,并且可以通过聚螺芴聚合物的光激发而降低到几乎为零。亚稳态导电归因于在氧化物-聚合物界面上形成的亚稳态对带相反电荷的缺陷对,而自修复与电阻转换有关。

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