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Direct imaging of structural changes induced by ionic liquid gating leading to engineered three-dimensional meso-structures

机译:由离子液体门控引起的结构变化的直接成像导致工程化的三维介观结构

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摘要

The controlled transformation of materials, both their structure and their physical properties, is key to many devices. Ionic liquid gating can induce the transformation of thin-film materials over long distances from the gated surface. Thus, the mechanism underlying this process is of considerable interest. Here we directly image, using in situ, real-time, high-resolution transmission electron microscopy, the reversible transformation between the oxygen vacancy ordered phase brownmillerite SrCoO2.5 and the oxygen ordered phase perovskite SrCoO3. We show that the phase transformation boundary moves at a velocity that is highly anisotropic, traveling at speeds ~30 times faster laterally than through the thickness of the film. Taking advantage of this anisotropy, we show that three-dimensional metallic structures such as cylinders and rings can be realized. Our results provide a roadmap to the construction of complex meso-structures from their exterior surfaces.
机译:材料的受控转变,无论是结构还是物理特性,都是许多设备的关键。离子液体浇口可在距门控表面很长距离的地方引起薄膜材料的转变。因此,这个过程的基础机制引起了极大的兴趣。在这里,我们使用原位,实时,高分辨率的透射电子显微镜直接成像,显示了氧空位有序相褐煤SrCoO2.5和氧有序相钙钛矿SrCoO3之间的可逆转变。我们表明,相变边界以高度各向异性的速度移动,横向移动速度比薄膜厚度快30倍。利用这种各向异性,我们表明可以实现三维金属结构,例如圆柱和环。我们的结果提供了从外部构造复杂的介观结构的路线图。

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