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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Hierarchical Zn3V3O8/C composite microspheres assembled from unique porous hollow nanoplates with superior lithium storage capability
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Hierarchical Zn3V3O8/C composite microspheres assembled from unique porous hollow nanoplates with superior lithium storage capability

机译:由具有优异锂存储能力的独特多孔中空纳米板组装而成的分层Zn3V3O8 / C复合微球

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摘要

Fabricating hollow/porous structures and coating carbon on their surfaces are two effective strategies to improve the electrochemical properties of electrode materials for lithium-ion batteries (LIBs). In this work, we report the successful synthesis of novel hierarchical Zn3V3O8/C microspheres assembled from unique porous hollow nanoplates via a facile reverse microemulsion method and a subsequent annealing process. Notably, the PVP assisted heterogeneous contraction effect plays an important role in the formation of the distinctive hollow structure in the constituent nanoplates during the annealing process. Impressively, the resulting Zn3V3O8/C composite shows excellent electrochemical performance with a large capacity (912 mA h g(-1) at 0.4 A g(-1)), excellent rate behavior (410 mA h g(-1) at 3.2 A g(-1)) and cycling stability (756 mA h g(-1) at 1.6 A g(-1) after 500 cycles) when evaluated as the anode material for LIBs. The superior electrochemical performance of the as-synthesized Zn3V3O8/C microspheres can be attributed to the existence of carbon on the surface and, in particular, the unique porous hollow nanoplate structure.
机译:制造空心/多孔结构并在其表面涂覆碳是提高锂离子电池(LIB)电极材料电化学性能的两种有效策略。在这项工作中,我们报告了通过简便的反向微乳化方法和随后的退火过程,成功地合成了由独特的多孔空心纳米板组装而成的新型分层Zn3V3O8 / C微球。值得注意的是,在退火过程中,PVP辅助的异质收缩效应在组成纳米板中独特的空心结构的形成中起着重要作用。令人印象深刻的是,所得Zn3V3O8 / C复合材料显示出出色的电化学性能,具有大容量(0.4 A g(-1)时为912 mA hg(-1)),出色的速率行为(3.2 A g(410 Ahg(-1))) -1))和循环稳定性(经过500次循环后在1.6 A g(-1)下为756 mA hg(-1))被评估为LIB的负极材料。合成后的Zn3V3O8 / C微球的优异电化学性能可归因于表面上存在碳,尤其是独特的多孔中空纳米板结构。

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