Ordered mesoporous tungsten oxide–carbon nanocomposite for use as a highly reversible negative electrode in lithium-ion batteries
In the present study, a tungsten oxide–carbon nanocomposite (WOx–C) is synthesized and employed as the negative electrode in lithium-ion batteries. The prepared material exhibited an ordered mesoporous carbon structure uniformly embedded by tungsten oxide nanoparticles. Also, it is composed of about...
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Veröffentlicht in: | Journal of alloys and compounds 2020-08, Vol.832, p.154816, Article 154816 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In the present study, a tungsten oxide–carbon nanocomposite (WOx–C) is synthesized and employed as the negative electrode in lithium-ion batteries. The prepared material exhibited an ordered mesoporous carbon structure uniformly embedded by tungsten oxide nanoparticles. Also, it is composed of about 90% highly reduced tungsten W5+ fraction. The conversion of WOx to W0 and Li2O is proven to be the major lithiation mechanism of WOx–C negative electrode. From electrochemical analysis, a distinct improvement in the delithiation resistance of tungsten oxide within the composite electrode is observed. This improvement in polarization is a result of the high electrical conductivity of the mesoporous carbon matrix and the uniform distribution of tungsten species. The lower delithiation polarization leads to a WOx-C electrode with very stable cycleability, which has been rarely observed in typical conversion-type negative electrodes.
•Novel preparation of ordered mesoporous tungsten oxide-carbon nanocomposite.•Uniform distribution of tungsten 5+ oxidation state nanoparticle.•Improvement of anode performance of conversion reaction due to nanocomposite structure. |
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ISSN: | 0925-8388 1873-4669 |
DOI: | 10.1016/j.jallcom.2020.154816 |