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Nanohelices by shadow growth

机译:Nanohelices影子增长

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摘要

The helix has remarkable qualities and is prevalent in many fields including mathematics, physics, chemistry, and biology. This shape, which is chiral by nature, is ubiquitous in biology with perhaps the most famous example being DNA. Other naturally occurring helices are common at the nanoscale in the form of protein secondary structures and in various macromolecules. Nanoscale helices exhibit a wide range of interesting mechanical, optical, and electrical properties which can be intentionally engineered into the structure by choosing the correct morphology and material. As technology advances, these fabrication parameters can be fine-tuned and matched to the application of interest. Herein, we focus on the fabrication and properties of nanohelices grown by a dynamic shadowing growth method combined with fast wafer-scale substrate patterning which has a number of distinct advantages. We review the fabrication methodology and provide several examples that illustrate the generality and utility of nanohelices shadow-grown on nanopatterns.
机译:螺旋非凡的品质,普遍在许多领域包括数学,物理、化学和生物学。由自然、手性无处不在生物学,也许最著名的例子DNA。常见的形式在纳米尺度上的蛋白质二级结构和不同大分子。一系列有趣的机械、光学和电气性能可以故意工程结构选择正确的形态和材料。进步,这些工艺参数调整和匹配中的应用的兴趣。nanohelices增长了一个动态的性质跟踪方法结合快速增长圆片规模衬底有一个模式数量的不同的优势。制造方法和提供一些例子说明了普遍性的效用nanohelices shadow-grownnanopatterns。

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