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Research Article

In situ TEM observation of dissolution and regrowth dynamics of MoO2 nanowires under oxygen

Wentao Yuan1Jian Yu1Hengbo Li1Ze Zhang1Chenghua Sun2( )Yong Wang1( )
Center of Electron Microscopy and State Key Laboratory of Silicon MaterialsSchool of Materials Science and EngineeringZhejiang UniversityHangzhou310027China
ARC Centre for Electromaterials ScienceSchool of ChemistryMonash UniversityClaytonVictoria3800Australia
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Abstract

Direct observation of the dissolution behavior of nanomaterials could provide fundamental insight to understanding their anisotropic properties and stability. The dissolution mechanism in solution and vacuum has been well documented. However, the gas-involved dissolution and regrowth have seldom been explored and the mechanisms remain elusive. We report herein, an in situ TEM study of the dissolution and regrowth dynamics of MoO2 nanowires under oxygen using environmental transmission electron microscopy (ETEM). For the first time, oscillatory dissolution on the nanowire tip is revealed, and, intriguingly, simultaneous layer-by-layer regrowth on the sidewall facets is observed, leading to a shorter and wider nanowire. Combined with first-principles calculations, we found that electron beam irradiation caused oxygen loss in the tip facets, which resulted in changing the preferential growth facets and drove the morphology reshaping.

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Nano Research
Pages 397-404

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Cite this article:
Yuan W, Yu J, Li H, et al. In situ TEM observation of dissolution and regrowth dynamics of MoO2 nanowires under oxygen. Nano Research, 2017, 10(2): 397-404. https://doi.org/10.1007/s12274-016-1299-z

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Received: 08 August 2016
Revised: 20 September 2016
Accepted: 23 September 2016
Published: 20 October 2016
© Tsinghua University Press and Springer-Verlag Berlin Heidelberg 2016