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In-situ Quasi-Instantaneous e-beam Driven Catalyst-Free Formation Of Crystalline Aluminum Borate Nanowires

机译:晶体铝硼酸盐纳米线的原位拟瞬时电子束驱动无催化剂形成

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摘要

The catalyst-assisted nucleation and growth mechanisms for many kinds of nanowires and nanotubes are pretty well understood. At times, though, 1D nanostructures form without a catalyst and the argued growth modes have inconsistencies. One such example is the catalyst-free growth of aluminium borate nanowires. Here we develop an in-situ catalyst-free room temperature growth route for aluminium nanowires using the electron beam in a transmission electron microscope. We provide strong experimental evidence that supports a formation process that can be viewed as a phase transition in which the generation of free-volume induced by the electron beam irradiation enhances the atomic mobility within the precursor material. The enhanced atomic mobility and specific features of the crystal structure of Al5BO9 drive the atomic rearrangement that results in the large scale formation of highly crystalline aluminium borate nanowires. The whole formation process can be completed within fractions of a second. Our developed growth mechanism might also be extended to describe the catalyst-free formation of other nanowires.
机译:许多种类的纳米线和纳米管的催化剂辅助成核和生长机理已经很清楚。但是,有时,一维纳米结构在没有催化剂的情况下形成,并且争论的生长模式具有不一致之处。一个这样的例子是硼酸铝纳米线的无催化剂生长。在这里,我们使用透射电子显微镜中的电子束为铝纳米线开发了一种原位无催化剂的室温生长途径。我们提供有力的实验证据来支持形成过程,该过程可以看作是相变,其中电子束辐照引起的自由体积的产生增强了前驱物材料内的原子迁移率。 Al5BO9的增强的原子迁移率和晶体结构的特定特征驱动原子重排,从而导致大规模形成高结晶度的硼酸铝纳米线。整个成型过程可以在几分之一秒内完成。我们开发的生长机制也可能扩展到描述其他纳米线的无催化剂形成。

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