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氧化锌纳米带向超晶格结构纳米螺旋的转变。

Conversion of zinc oxide nanobelts into superlattice-structured nanohelices.

作者信息

Gao Pu Xian, Ding Yong, Mai Wenjie, Hughes William L, Lao Changshi, Wang Zhong Lin

机构信息

School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0245, USA.

出版信息

Science. 2005 Sep 9;309(5741):1700-4. doi: 10.1126/science.1116495.

Abstract

A previously unknown rigid helical structure of zinc oxide consisting of a superlattice-structured nanobelt was formed spontaneously in a vapor-solid growth process. Starting from a single-crystal stiff nanoribbon dominated by the c-plane polar surfaces, an abrupt structural transformation into the superlattice-structured nanobelt led to the formation of a uniform nanohelix due to a rigid lattice rotation or twisting. The nanohelix was made of two types of alternating and periodically distributed long crystal stripes, which were oriented with their c axes perpendicular to each other. The nanohelix terminated by transforming into a single-crystal nanobelt dominated by nonpolar (0110) surfaces. The nanohelix could be manipulated, and its elastic properties were measured, which suggests possible uses in electromechanically coupled sensors, transducers, and resonators.

摘要

在气-固生长过程中,自发形成了一种由超晶格结构纳米带组成的、此前未知的氧化锌刚性螺旋结构。从以c面极性表面为主的单晶刚性纳米带开始,由于刚性晶格旋转或扭曲,向超晶格结构纳米带的突然结构转变导致了均匀纳米螺旋的形成。纳米螺旋由两种交替且周期性分布的长晶条纹组成,它们的c轴相互垂直。纳米螺旋通过转变为由非极性(0110)表面主导的单晶纳米带而终止。纳米螺旋可以被操控,并测量了其弹性特性,这表明它在机电耦合传感器、换能器和谐振器中可能有应用。

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