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Carbon Nanofibers Heavy Laden with Li3V2(PO4)3 Particles Featuring Superb Kinetics for High‐Power Lithium Ion Battery

机译:具有高动力学动力学的Li3V2(PO4)3颗粒的重载碳纳米纤维适用于高功率锂离子电池

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摘要

Fast lithium ion and electron transport inside electrode materials are essential to realize its superb electrochemical performances for lithium rechargeable batteries. Herein, a distinctive structure of cathode material is proposed, which can simultaneously satisfy these requirements. Nanosized Li3V2(PO4)3 (LVP) particles can be successfully grown up on the carbon nanofiber via electrospinning method followed by a controlled heat‐treatment. Herein, LVP particles are anchored onto the surface of carbon nanofiber, and with this growing process, the size of LVP particles as well as the thickness of carbon nanofiber can be regulated together. The morphological features of this composite structure enable not only direct contact between electrolytes and LVP particles that can enhance lithium ion diffusivity, but also fast electron transport through 1D carbon network along nanofibers simultaneously. Finally, it is demonstrated that this unique structure is an ideal one to realize high electron transport and ion diffusivity together, which are essential for enhancing the electrochemical performances of electrode materials.
机译:快速的锂离子和电子在电极材料内部的传输对于实现锂可充电电池的卓越电化学性能至关重要。在此,提出了可以同时满足这些要求的阴极材料的独特结构。纳米Li3V2(PO4)3(LVP)颗粒可以通过静电纺丝方法并随后进行可控的热处理,在碳纳米纤维上成功生长。这里,LVP颗粒锚固在碳纳米纤维的表面上,并且通过该生长过程,可以一起调节LVP颗粒的尺寸以及碳纳米纤维的厚度。这种复合结构的形态特征不仅使电解质和LVP颗粒之间可以直接接触,从而可以增强锂离子的扩散能力,而且还可以使电子同时沿着纳米纤维快速通过一维碳网络传输。最后,证明了这种独特的结构是同时实现高电子传输和离子扩散性的理想结构,这对于增强电极材料的电化学性能至关重要。

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