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Micro-nanostructured CuO/C spheres as high-performance anode materials for Na-ion batteries

机译:Micro-nanostructured措/ C球体高性能Na-ion阳极材料电池

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摘要

In this paper, we report on the synthesis of micro-nanostructured CuO/C spheres by aerosol spray pyrolysis and their application as high-performance anodes in sodium-ion batteries. Micro-nanostructured CuO/C spheres with different CuO contents were synthesized through aerosol spray pyrolysis by adjusting the ratio of reactants and heat-treated by an oxidation process. The as-prepared CuO/C spheres show uniformly spherical morphology, in which CuO nanoparticles (similar to 10 nm) are homogeneously embedded in the carbon matrix (denoted as 10-CuO/C). The electrochemical performance of 10-CuO/C with a carbon weight of 44% was evaluated as the anode material for Na-ion batteries. It can deliver a capacity of 402 mA h g(-1) after 600 cycles at a current density of 200 mA g(-1). Furthermore, a capacity of 304 mA h g(-1) was obtained at a high current density of 2000 mA g(-1). The superior electrochemical performance of the micro-nanostructured CuO/C spheres leads to the enhancement of the electronic conductivity of the nanocomposite and the accommodation of the volume variation of CuO/C during charge/discharge cycling.
机译:在本文中,我们报告的合成通过气溶胶micro-nanostructured措/ C球体喷雾热解法及其应用高性能阳极钠电池。Micro-nanostructured措/ C与不同的领域通过气溶胶措内容合成喷雾热解法通过调整的比率由氧化反应物和热处理的过程。均匀的球形形貌,措纳米颗粒(类似于10海里)均匀嵌入碳矩阵(表示为10-CuO / C)。10-CuO / C的性能与碳的重量44%是评估的阳极材料Na-ion电池。402毫安h g(1)后600周期的电流密度200毫安g(1)。304毫安h g(1)获得了在高电流密度2000毫安g(1)。的电化学性能micro-nanostructured措/ C球体导致增强的电子导电率纳米复合材料体积的住宿在充电/放电措/ C的变化骑自行车。

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