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Research Article

Mirror-twin induced bicrystalline InAs nanoleaves

Mun Teng Soo1Kun Zheng2,3( )Qiang Gao4Hark Hoe Tan4Chennupati Jagadish4Jin Zou1,2( )
Materials EngineeringThe University of QueenslandSt. LuciaQLD4072Australia
Centre for Microscopy and MicroanalysisThe University of QueenslandSt. LuciaQLD4072Australia
Australian Institute for Bioengineering and NanotechnologyThe University of QueenslandSt. LuciaQLD4072Australia
Department of Electronic Materials EngineeringResearch School of Physics and EngineeringThe Australian National UniversityCanberraACT2601Australia
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Abstract

In this study, leaf-like one-dimensional InAs nanostructures were grown by the metal–organic chemical vapor deposition method. Detailed structural characterization suggests that the nanoleaves contain relatively low-energy {122} or {133} mirror twins acting as their midribs and narrow sections connecting the nanoleaves and their underlying bases as petioles. Importantly, the mirror twins lead to identical lateral growth of the twinned structures in terms of crystallography and polarity, which is essential for the formation of lateral symmetrical nanoleaves. It has been found that the formation of nanoleaves is driven by catalyst energy minimization. This study provides a biomimic of leaf found in nature by fabricating a semiconductor nanoleaf.

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Nano Research
Pages 766-773

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Cite this article:
Soo MT, Zheng K, Gao Q, et al. Mirror-twin induced bicrystalline InAs nanoleaves. Nano Research, 2016, 9(3): 766-773. https://doi.org/10.1007/s12274-015-0955-z

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Received: 25 August 2015
Revised: 23 November 2015
Accepted: 24 November 2015
Published: 09 January 2016
© Tsinghua University Press and Springer‐Verlag Berlin Heidelberg 2015