Novel synthetic strategy towards NiO/Ni3N composite hollow nanofibers for superior NOx gas-sensing properties at room temperature
NiO hollow nanofibers were successfully synthesized via a facile electrospinning followed by post-calcination process, NiO/Ni 3 N composite hollow nanofibers and Ni 3 N nanofibers were prepared by nitridation of the prepared NiO hollow nanofibers in the presence of NH 3 atmosphere at 310 °C and 330...
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Main Authors | , , , , , , |
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Format | Journal Article |
Language | English |
Published |
11.10.2016
|
Online Access | Get full text |
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Summary: | NiO hollow nanofibers were successfully synthesized
via
a facile electrospinning followed by post-calcination process, NiO/Ni
3
N composite hollow nanofibers and Ni
3
N nanofibers were prepared by nitridation of the prepared NiO hollow nanofibers in the presence of NH
3
atmosphere at 310 °C and 330 °C, respectively. The crystal structure, morphology and compositions of NiO hollow nanofibers, NiO/Ni
3
N composite hollow nanofibers and Ni
3
N nanofibers were investigated by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), energy dispersive spectrometry (EDS). Possible formation mechanism of samples was also proposed. By using NO
x
as a probe molecule, compared with NiO hollow nanofibers and Ni
3
N nanofibers, NiO/Ni
3
N composite hollow nanofibers exhibit more excellent sensing performances in terms of high response, fast response time, nice selectivity and excellent stability at room temperature. The outstanding performances in gas sensing of NiO/Ni
3
N composite hollow nanofibers owe to one-dimensional hollow fibrous nanostructure and the unique chemical composition, and NiO/Ni
3
N composite hollow nanofibers are promising material for NO
x
gas sensor at room temperature.
The prepared NiO hollow nanofibers, NiO/Ni
3
N hollow nanofibers and Ni
3
N nanofibers exhibit good sensing performances toward NO
x
at room temperature. |
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ISSN: | 2046-2069 |
DOI: | 10.1039/c6ra21055d |