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Interconnected core-shell MoO2 microcapsules with nanorod-assemhled shells as high-performance lithium-ion battery anodes

机译:互连的核壳型MoO2微囊与纳米棒组装的壳作为高性能锂离子电池阳极

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摘要

In this paper, a facile and template-free one-step strategy has been developed to synthesize interconnected core-shell MoO2 hierarchical microcapsules via a solvothermal route. The as-synthesized M0O2 microcapsules exhibit a core-shell hierarchical architecture, which integrates four beneficial features: carbon-free, hollow cavity, porous shell, and interconnected wall. Due to their unique nanostructure, when evaluated for lithium-storage properties, they exhibit a high specific capacity of 749.3 mA h g~(-1) in the first discharge at a rate of 1 C and high reversible capacity of 623.8 mA h g~(-1) after 50 cycles. Meanwhile, higher rate (2 C and 5 C) measurements show that the carbon-free, core-shell MoO2 microcapsules exhibit much better rate capacity even compared to MoO2-C nanocomposites tested under the same conditions. This superior electrochemical performance of the as-synthesized microcapsules could be ascribed to, on the one hand, their inherently metallic electrical resistivity, and on the other hand, their special structure, which not only provides short Li ion pathways and high electronic and ionic conductivity, and but also be able to accommodate large volume variation.
机译:在本文中,已经开发了一种简便且无模板的一步策略,以通过溶剂热途径合成相互连接的核-壳MoO2分级微胶囊。合成后的M0O2微胶囊具有核-壳分层结构,该结构集成了四个有益功能:无碳,空心,多孔壳和相互连接的壁。由于其独特的纳米结构,当评估其锂存储性能时,它们以1 C的速率在首次放电中表现出749.3 mA hg〜(-1)的高比容量和623.8 mA hg〜(-)的高可逆容量1)经过50个循环。同时,更高的速率(2 C和5 C)测量结果表明,与在相同条件下测试的MoO2-C纳米复合材料相比,无碳的核壳型MoO2微胶囊显示出更好的速率容量。合成后的微胶囊具有如此优异的电化学性能,一方面可以归因于其固有的金属电阻率,另一方面归因于其特殊的结构,不仅提供了短的锂离子通道,而且还具有很高的电子和离子电导率,而且还可以适应较大的音量变化。

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