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Characterization of cathode from LiNixMn2-xO4 nanofibers by electrospinning for Li-ion batteries

机译:LiNixMn2-xO4纳米纤维阴极的静电纺丝表征

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摘要

Ni substituted LiMn2O4 nanofiber cathode materials (LiNixMn2-xO4, x = 0.2, 0.3, 0.4, 0.5) have been prepared by a combination of electrospinning and sol-gel techniques. The nanofiber cathode materials appear to have a porous "network-like" morphology with nanosized diameters of similar to 120 nm and microsized lengths of >5 mu m. The structure provides short lithium diffusion paths and a large surface area, facilitating rapid charge-discharge characteristics. The Ni substitution not only mitigated the Jahn-Teller distortion effect but also greatly suppressed the Mn dissolution, which improved the rate capability and cycle performance. The LiNi0.4Mn1.6O4 nanofiber cathode exhibits excellent rate capability and cycle performance both at room temperature and at 55 degrees C. Thus, the LiNi0.4Mn1.6O4 nanofibers may be a potential cathode material for high rate discharge lithium ion batteries.
机译:Ni取代的LiMn2O4纳米纤维阴极材料(LiNixMn2-xO4,x = 0.2、0.3、0.4、0.5)已通过电纺丝和溶胶-凝胶技术相结合制备。纳米纤维阴极材料似乎具有多孔的“网状”形态,纳米直径类似于120nm,微米长度大于5μm。该结构提供短的锂扩散路径和大的表面积,有利于快速的充放电特性。 Ni取代不仅减轻了Jahn-Teller变形效应,而且极大地抑制了Mn的溶解,从而改善了速率能力和循环性能。 LiNi0.4Mn1.6O4纳米纤维阴极在室温和55摄氏度下均具有出色的倍率性能和循环性能。因此,LiNi0.4Mn1.6O4纳米纤维可作为高倍率放电锂离子电池的潜在阴极材料。

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