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悬浮单晶 VO₂ 纳米片中的机电致动和电流诱导亚稳态。

Electromechanical actuation and current-induced metastable states in suspended single-crystalline VO₂ nanoplatelets.

机构信息

Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.

出版信息

Nano Lett. 2011 Aug 10;11(8):3065-73. doi: 10.1021/nl200493k. Epub 2011 Jul 6.

Abstract

Current-induced electromechanical actuation enabled by the metal-insulator transition in VO(2) nanoplatelets is demonstrated. The Joule heating by a sufficient current flowing through suspended nanoplatelets results in formation of heterophase domain patterns and is accompanied by nanoplatelet deformation. The actuation action can be achieved in a wide temperature range below the bulk phase transition temperature (68 °C). The observed current-sustained heterophase domain structures should be interpreted as distinct metastable states in free-standing and end-clamped VO(2) samples. We analyze the main prerequisites for the realization of a current-controlled actuator based on the proposed concept.

摘要

本文展示了通过 VO(2)纳米板的金属-绝缘体转变实现的电流致动。通过在悬浮纳米板中流过足够的电流产生的焦耳加热导致形成异相畴图案,并伴随着纳米板的变形。这种致动作用可以在低于体相转变温度(68°C)的宽温度范围内实现。观察到的电流持续的异相畴结构应被解释为自由-standing 和端夹 VO(2)样品中的独特亚稳态。我们根据提出的概念分析了实现电流控制执行器的主要前提条件。

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