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具有双重手性的纳米结构中的可控旋转反转。

Controllable rotational inversion in nanostructures with dual chirality.

机构信息

School of Mathematics and Physics, Suzhou University of Science and Technology, Suzhou 215009, China.

出版信息

Nanoscale. 2018 Apr 5;10(14):6343-6348. doi: 10.1039/c7nr09035h.

Abstract

Chiral structures play an important role in natural sciences due to their great variety and potential applications. A perversion connecting two helices with opposite chirality creates a dual-chirality helical structure. In this paper, we develop a novel model to explore quantitatively the mechanical behavior of normal, binormal and transversely isotropic helical structures with dual chirality and apply these ideas to known nanostructures. It is found that both direction and amplitude of rotation can be finely controlled by designing the cross-sectional shape. A peculiar rotational inversion of overwinding followed by unwinding, observed in some gourd and cucumber tendril perversions, not only exists in transversely isotropic dual-chirality helical nanobelts, but also in the binormal/normal ones when the cross-sectional aspect ratio is close to 1. Beyond this rotational inversion region, the binormal and normal dual-chirality helical nanobelts exhibit a fixed directional rotation of unwinding and overwinding, respectively. Moreover, in the binormal case, the rotation of these helical nanobelts is nearly linear, which is promising as a possible design for linear-to-rotary motion converters. The present work suggests new designs for nanoscale devices.

摘要

手性结构因其多样性和潜在应用而在自然科学中起着重要作用。一种扭曲将两个具有相反手性的螺旋连接起来,形成了一种双手性螺旋结构。在本文中,我们开发了一种新的模型来定量探索具有双手性的正常、副法线和横向各向同性螺旋结构的力学行为,并将这些思想应用于已知的纳米结构。研究发现,通过设计横截面形状,可以精细地控制旋转的方向和幅度。在一些葫芦和黄瓜卷须扭曲中观察到的一种奇特的超缠绕然后解缠绕的旋转反转不仅存在于横向各向同性的双手性螺旋纳米带中,也存在于副法线/法线双手性螺旋纳米带中,当横截面纵横比接近 1 时。在这个旋转反转区域之外,副法线和法线双手性螺旋纳米带分别表现出解缠绕和超缠绕的固定方向旋转。此外,在副法线情况下,这些螺旋纳米带的旋转几乎是线性的,这有望成为线性到旋转运动转换器的一种可能设计。本工作为纳米尺度器件的设计提供了新思路。

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