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首页> 外文期刊>Angewandte Chemie >Ruthenium-Oxide-Coated Sodium Vanadium Fluorophosphate Nanowires as High-Power Cathode Materials for Sodium-Ion Batteries
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Ruthenium-Oxide-Coated Sodium Vanadium Fluorophosphate Nanowires as High-Power Cathode Materials for Sodium-Ion Batteries

机译:氧化钌包覆的氟磷酸钒钒纳米线作为钠离子电池的高功率阴极材料

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摘要

Sodium-ion batteries are a very promising alternative to lithium-ion batteries because of their reliance on an abundant supply of sodium salts, environmental benignity, and low cost. However, the low rate capability and poor long-term stability still hinder their practical application. A cathode material, formed of RuO2-coated Na3V2O2(PO4)(2)F nanowires, has a 50nm diameter with the space group of I4/mmm. When used as a cathode material for Na-ion batteries, a reversible capacity of 120mAhg(-1) at 1C and 95mAhg(-1) at 20C can be achieved after 1000 charge-discharge cycles. The ultrahigh rate capability and enhanced cycling stability are comparable with high performance lithium cathodes. Combining first principles computational investigation with experimental observations, the excellent performance can be attributed to the uniform and highly conductive RuO2 coating and the preferred growth of the (002) plane in the Na3V2O2(PO4)(2)F nanowires.
机译:钠离子电池是锂离子电池的非常有前途的替代品,因为它们依赖于钠盐的大量供应,环境友好和低成本。但是,低倍率能力和较差的长期稳定性仍然阻碍了它们的实际应用。由涂有RuO2的Na3V2O2(PO4)(2)F纳米线形成的阴极材料的直径为50nm,空间组为I4 / mm。当用作Na离子电池的正极材料时,经过1000次充放电循环,可实现1C下120mAhg(-1)和20C下95mAhg(-1)的可逆容量。超高倍率能力和增强的循环稳定性可与高性能锂阴极媲美。将第一原理计算研究与实验观察相结合,可以将优异的性能归因于均匀且高导电性的RuO2涂层以及Na3V2O2(PO4)(2)F纳米线中(002)平面的优选生长。

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