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弯曲、扣合与折叠:纳米膜的机械工程学

Bend, buckle, and fold: mechanical engineering with nanomembranes.

作者信息

Kim Dae-Hyeong, Rogers John A

机构信息

Department of Materials Science and Engineering, University of Illinois, Urbana-Champaign, Illinois 61801, USA.

出版信息

ACS Nano. 2009 Mar 24;3(3):498-501. doi: 10.1021/nn9001769.

Abstract

Research on nanomembranes and graphene sheets represents the "third wave" of work on nanomaterials, following earlier studies of nanoparticles/fullerenes and, somewhat later, nanowires/nanotubes. Inorganic semiconductor nanomembranes are particularly appealing due to their materials diversity, the ease with which they can be grown with high quality over large areas, and the ability to exploit them in unique, high-performance electronic and optoelectronic systems. The mechanics of such nanomembranes and the coupling of strain to their electronic properties are topics of considerable current interest. A new paper by the Lagally group in this issue combines single-crystalline silicon nanomembranes with chemical vapor deposition techniques to form "mechano-electronic" superlattices whose properties could lead to unusual classes of electronic devices.

摘要

对纳米膜和石墨烯片的研究代表了纳米材料研究的“第三次浪潮”,此前是对纳米颗粒/富勒烯的早期研究,以及稍晚些时候对纳米线/纳米管的研究。无机半导体纳米膜尤其具有吸引力,这是因为它们材料多样,能够在大面积上高质量生长,并且能够在独特的高性能电子和光电子系统中加以利用。此类纳米膜的力学特性以及应变与其电子特性的耦合是当前备受关注的课题。本期拉加利团队发表的一篇新论文将单晶硅纳米膜与化学气相沉积技术相结合,形成了“机械电子”超晶格,其特性可能会带来不同寻常的电子器件类别。

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