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Nanorod-Nanoflake Interconnected LiMnPO4 center dot Li3V2(PO4)(3)/C Composite for High-Rate and Long-Life Lithium-Ion Batteries

机译:纳米棒-纳米薄片互连的LiMnPO4中心点Li3V2(PO4)(3)/ C复合材料,用于高速率和长寿命的锂离子电池

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摘要

Olivine-type structured LiMnPO4 has been extensively studied as a high-energy density cathode material for lithium-ion batteries. However, preparation of high-performance LiMnPO4 is still a large obstacle due to its intrinsically sluggish electrochemical kinetics. Recently, making the composites from both active components has been proven to be a good proposal to improve the electrochemical properties of cathode materials. The composite materials can combine the advantages of each phase and improve the comprehensive properties. Herein, a LiMnPO4 center dot Li3V2(PO4)3/C composite with interconnected nanorods and nanoflakes has been synthesized via a one-pot, solid-state reaction in molten hydrocarbon, where the oleic acid functions as a surfactant. With a highly uniform hybrid architecture, conductive carbon coating, and mutual cross-doping, the LiMnPO4 center dot Li3V2(PO4)(3)/C composite manifests high capacity, good rate capability, and excellent cyclic stability in lithium-ion batteries. The composite electrodes deliver a high reversible capacity of 101.3 mAh g(-1) at the rate up to 16 C. After 4000 long-term cycles, the electrodes can still retain 79.39% and 72.74% of its maximum specific discharge capacities at the rates of 4C and 8C, respectively. The results demonstrate that the nanorod-nanoflake interconnected LiMnPO4 center dot Li3V2(PO4)(3)/C composite is a promising cathode material for high-performance lithium ion batteries.
机译:橄榄石型结构化的LiMnPO4作为锂离子电池的高能量密度阴极材料已被广泛研究。然而,由于其固有的缓慢的电化学动力学,制备高性能LiMnPO 4仍然是一个很大的障碍。近来,已证明由两种活性组分制成复合材料是改善阴极材料的电化学性能的好建议。该复合材料可以结合各相的优点并提高综合性能。在此,已经通过在熔融烃中的一锅式固态反应合成了具有互连的纳米棒和纳米薄片的LiMnPO 4中心点Li 3 V 2(PO 4)3 / C复合材料,其中油酸充当表面活性剂。 LiMnPO4中心点Li3V2(PO4)(3)/ C复合材料具有高度均匀的混合体系结构,导电碳涂层和相互交叉掺杂,在锂离子电池中表现出高容量,良好的倍率性能和出色的循环稳定性。复合电极在高达16 C的速率下可提供101.3 mAh g(-1)的高可逆容量。经过4000个长期循环后,电极仍可在该速率下保留其最大比放电容量的79.39%和72.74%分别为4C和8C。结果表明,纳米棒-纳米片互连的LiMnPO4中心点Li3V2(PO4)(3)/ C复合材料是一种有希望的高性能锂离子电池正极材料。

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