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Corrugated carbon nanotube microstructures with geometrically tunable compliance

机译:波纹碳纳米管微结构具有几何可调的柔度

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摘要

Deterministic organization of nanostructures into microscale geometries is essential for the development of materials with novel mechanical, optical, and surface properties. We demonstrate scalable fabrication of 3D corrugated carbon nanotube (CNT) microstructures, via an iterative sequence of vertically aligned CNT growth and capillary self-assembly. Vertical microbellows and tilted microcantilevers are created over large areas, and these structures can have thin walls with aspect ratios exceeding 100:1. We show these structures can be used as out-of-plane microsprings with compliance determined by the wall thickness and number of folds.
机译:将纳米结构确定性组织为微米级几何形状对于开发具有新颖机械,光学和表面特性的材料至关重要。我们通过垂直对齐的CNT生长和毛细管自组装的迭代序列,演示了3D波纹碳纳米管(CNT)微观结构的可扩展制造。垂直微波纹管和倾斜的微悬臂梁在大面积上形成,并且这些结构可以具有长宽比超过100:1的薄壁。我们显示这些结构可以用作平面外微弹簧,其顺应性由壁厚和褶皱数决定。

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