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氮化铝的螺旋生长:从纳米结构到单晶对其生长习性的新见解。

Helical growth of aluminum nitride: new insights into its growth habit from nanostructures to single crystals.

作者信息

Zhang Xing-Hong, Shao Rui-Wen, Jin Lei, Wang Jian-Yu, Zheng Kun, Zhao Chao-Liang, Han Jie-Cai, Chen Bin, Sekiguchi Takashi, Zhang Zhi, Zou Jin, Song Bo

机构信息

Centre for Composite Materials, Harbin Institute of Technology, Harbin 150080, China.

Institute of Microstructure and Properties of Advanced Materials, Beijing University of Technology, Beijing 100124, China.

出版信息

Sci Rep. 2015 May 15;5:10087. doi: 10.1038/srep10087.

Abstract

By understanding the growth mechanism of nanomaterials, the morphological features of nanostructures can be rationally controlled, thereby achieving the desired physical properties for specific applications. Herein, the growth habits of aluminum nitride (AlN) nanostructures and single crystals synthesized by an ultrahigh-temperature, catalyst-free, physical vapor transport process were investigated by transmission electron microscopy. The detailed structural characterizations strongly suggested that the growth of AlN nanostructures including AlN nanowires and nanohelixes follow a sequential and periodic rotation in the growth direction, which is independent of the size and shape of the material. Based on these experimental observations, an helical growth mechanism that may originate from the coeffect of the polar-surface and dislocation-driven growth is proposed, which offers a new insight into the related growth kinetics of low-dimensional AlN structures and will enable the rational design and synthesis of novel AlN nanostructures. Further, with the increase of temperature, the growth process of AlN grains followed the helical growth model.

摘要

通过了解纳米材料的生长机制,可以合理控制纳米结构的形态特征,从而实现特定应用所需的物理性能。在此,通过透射电子显微镜研究了通过超高温、无催化剂物理气相传输过程合成的氮化铝(AlN)纳米结构和单晶的生长习性。详细的结构表征有力地表明,包括AlN纳米线和纳米螺旋在内的AlN纳米结构的生长在生长方向上遵循连续且周期性的旋转,这与材料的尺寸和形状无关。基于这些实验观察结果,提出了一种可能源于极性表面和位错驱动生长共同作用的螺旋生长机制,这为低维AlN结构的相关生长动力学提供了新的见解,并将有助于新型AlN纳米结构的合理设计与合成。此外,随着温度的升高,AlN晶粒的生长过程遵循螺旋生长模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2f0/4432374/f2440e609699/srep10087-f1.jpg

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