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Na3V2(PO4)3 particles partly embedded in carbon nanofibers with superb kinetics for ultra-high power sodium ion batteries

机译:Na3V2(PO4)3颗粒部分嵌入具有卓越动力学特性的碳纳米纤维中,用于超高功率钠离子电池

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摘要

We here describe the extraordinary performance of NASICON Na3V2(PO4)3-carbon nanofiber (NVP-CNF) composites with ultra-high power and excellent cycling performance. NVP-CNFs are composed of CNFs at the center part and partly embedded NVP nanoparticles in the shell. We first report this unique morphology of NVP-CNFs for the electrode material of secondary batteries as well as for general energy conversion materials. Our NVP-CNFs show not only a high discharge capacity of approx. 88.9 mA h g-1 even at a high current density of 50 C but also approx. 93% cyclic retention property after 300 cycles at 1 C. The superb kinetics and excellent cycling performance of the NVP-CNFs are attributed to the facile migration of Na ions through the partly exposed regions of NVP nanoparticles that are directly in contact with an electrolyte as well as the fast electron transfer along the conducting CNF pathways.
机译:我们在此描述具有超高功率和出色循环性能的NASICON Na3V2(PO4)3-碳纳米纤维(NVP-CNF)复合材料的非凡性能。 NVP-CNF由中心的CNF和部分嵌入外壳的NVP纳米粒子组成。我们首先报告了NVP-CNF的这种独特形态,用于二次电池的电极材料以及一般的能量转换材料。我们的NVP-CNF不仅显示出高放电容量。即使在50 C的高电流密度下也可达到88.9 mA h g-1。在1 C下进行300次循环后,具有93%的循环保留性能。NVP-CNF的出色动力学和出色的循环性能归因于Na离子通过NVP纳米颗粒的部分暴露区域的便捷迁移,该区域直接与电解质接触并与电解质接触。以及沿着导电CNF路径的快速电子转移。

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