Literature DB >> 24212249

β-Sialon nanowires, nanobelts and hierarchical nanostructures: morphology control, growth mechanism and cathodoluminescence properties.

Juntong Huang1, Zhaohui Huang, Yangai Liu, Minghao Fang, Kai Chen, Yaoting Huang, Saifang Huang, Haipeng Ji, Jingzhou Yang, Xiaowen Wu, Shaowei Zhang.   

Abstract

Morphology control of one dimension (1D) nanomaterials is a pivotal issue in the field of nanoscience research to exploit their novel properties. Herein, we report the morphology controlled synthesis of 1D β-Sialon nanowires, nanobelts and hierarchical nanostructures via a thermal-chemical vapour deposition process using an appropriately selected catalyst and optimized temperature schedule. Vapour-solid (VS), a combination of vapour-liquid-solid (VLS)-based and VS-tip, and a combination of VS for one-generation nanowires with nucleation, growth and coalescence of two-generation nanobranches (NGCB) are used to explain the growth of β-Sialon nanowires, nanobelts and hierarchical nanostructures, respectively. Cathodoluminescence measurements show that the individual β-Sialon 1D nanostructures with different morphologies have different luminescent properties. All nanostructures exhibit two distinct emission peaks, the violet/blue emission centered at ~390 nm (3.18 eV), attributable to the near band edge (NBE) emission, and the red emission centered at ~728 nm (1.70 eV), assigned to the deep level (DL) emission. However, the DL emission is the ruling emission in the case of an individual β-Sialon nanowire, whereas the NBE emission becomes dominant in the case of an individual nanobelt as well as a hierarchical nanostructure due to the size and surface effects. The as-synthesized β-Sialon with controlled nanostructures and various morphologies can find potential applications in future nanodevices with tailorable or tunable photoelectric properties.

Entities:  

Year:  2013        PMID: 24212249     DOI: 10.1039/c3nr03896c

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  2 in total

1.  Fe(NO3)3-assisted large-scale synthesis of Si₃N₄ nanobelts from quartz and graphite by carbothermal reduction-nitridation and their photoluminescence properties.

Authors:  Shuyue Liu; Minghao Fang; Zhaohui Huang; Juntong Huang; Haipeng Ji; Haitao Liu; Yan-gai Liu; Xiaowen Wu
Journal:  Sci Rep       Date:  2015-03-11       Impact factor: 4.379

2.  Morphology controlling method for amorphous silica nanoparticles and jellyfish-like nanowires and their luminescence properties.

Authors:  Haitao Liu; Zhaohui Huang; Juntong Huang; Song Xu; Minghao Fang; Yan-Gai Liu; Xiaowen Wu; Shaowei Zhang
Journal:  Sci Rep       Date:  2016-03-04       Impact factor: 4.379

  2 in total

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