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Synthesis and characterization of LiMn_(1-x)Fe_xPO4/carbon nanotubes composites as cathodes for Li-ion batteries

机译:锂离子电池正极材料LiMn_(1-x)Fe_xPO4 /碳纳米管复合材料的合成与表征

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摘要

Carbon nanotubes (CNT) coated with LiMn_(1-x) Fe_xPO4 (0.2≤x≤0.8), as possible cathode materials, was synthesized by using a sol-gel process (Polyol method), after annealing under flowing nitrogen. X-ray diffraction (XRD) patterns of the composites confirmed the formation of the olivine structured LiMn_(1-x)Fe_xPO4 phase and no secondary phases were detected. The morphological investigation revealed the formation of agglomerates with particles size ranging between 300 and 700 nm. XRD investigation of composites shows difference of the morphology by doping CNT and carbon black in the composites. Transmission electron microscopy shows the growth of nano-sized particles on CNT (20-70 nm) and the agglomeration of primary particles to form secondary particles. The X-ray photoelec-tron spectroscopy showed that the Fe and Mn ions are in divalent states in the LiMn_(1-X)Fe_XPO4 composites. The cyclic voltamograms showed the oxidation peaks of iron and manganese ions at 3.53-3.63 and 4.05-4.33 V, respectively, while the reduction peaks were found at 3.21-3.42 V (iron reduction) and 3.85-3.93 V (manganese reduction) depending on the iron content in the composition. The LiMno.6-Fe_(0.4)PO4/CNT composite (x=0.4) (with 20 %wt CNT) delivered a specific capacity of 120 mAhg~(-1) (at a discharge rateofC/20 andRT).
机译:在流动的氮气中退火之后,通过使用溶胶-凝胶法(多元醇法)合成作为可能的阴极材料的,涂覆有LiMn_(1-x)Fe_xPO4(0.2≤x≤0.8)的碳纳米管(CNT)。复合材料的X射线衍射(XRD)图谱证实形成了橄榄石结构的LiMn_(1-x)Fe_xPO4相,未检测到次生相。形态学研究表明形成了粒径在300至700nm之间的附聚物。复合材料的XRD研究表明,通过在复合材料中掺杂CNT和炭黑,形貌有所不同。透射电子显微镜显示纳米尺寸的颗粒在CNT(20-70 nm)上的生长以及一次颗粒的团聚形成二次颗粒。 X射线光电子能谱表明,LiMn_(1-X)Fe_XPO4复合材料中Fe和Mn离子为二价态。循环伏安图显示,铁离子和锰离子的氧化峰分别在3.53-3.63和4.05-4.33 V处,而还原峰在3.21-3.42 V(铁还原)和3.85-3.93 V(锰还原)下取决于成分中的铁含量。 LiMno.6-Fe_(0.4)PO4 / CNT复合材料(x = 0.4)(含20 wt%CNT)的比容量为120 mAhg〜(-1)(放电速率为C / 20和RT)。

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