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Enhancing the High Rate Capability and Cycling Stability of LiMn2O4 by Coating of Solid-State Electrolyte LiNbO3

机译:通过固态电解质LiNbO3的涂层增强LiMn2O4的高倍率能力和循环稳定性

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摘要

To study the influence of solid-state electrolyte coating layers on the performance of cathode materials for lithium-ion batteries in combination with organic liquid electrolyte, LiNbO3-coated Li1.08Mn1.92O4 cathode materials were synthesized by using a facile solid-state reaction method. The 0.06LiNbO(3)-0.97Li(1.08)Mn(1.92)O(4) cathode exhibited an initial discharge capacity of 125 mAh g(-1), retaining a capacity of 119 mAh g(-1) at 25 degrees C, while at 55 degrees C, it exhibited an initial discharge capacity of 130 mAh g(-1), retaining a capacity of 111 mAh g(-1), both at a current density of 0.5 C (where 1 C is 148 mAh g(-1)). Very good rate capability was demonstrated, with the 0.06LiNbO(3-0.97)Li(1.08)Mn(1.92)O(4) cathode showing more than 85% capacity at the rate of 50 C compared with the capacity at 0.5 C. The 0.06LiNbO(3-0.97)Li(1.08)Mn(1.92)O(4) cathode showed a high lithium diffusion coefficient (1.6 X 10(-10) cm(2) s(-1) at 55 degrees C), and low apparent activation energy (36.9 kJ mol(-1)). The solid-state electrolyte coating layer is effective for preventing Mn dissolution and maintaining the high ionic conductivity between the electrode and the organic liquid electrolyte, which may improve the design and construction of next-generation large-scale lithium-ion batteries with high power and safety.
机译:为了研究固态电解质涂层对锂离子电池正极材料与有机液体电解质结合性能的影响,采用一种简便的固态反应方法合成了包覆有LiNbO3的Li1.08Mn1.92O4正极材料。 。 0.06LiNbO(3)-0.97Li(1.08)Mn(1.92)O(4)阴极展现出125 mAh g(-1)的初始放电容量,在25摄氏度下保持119 mAh g(-1)的容量,而在55摄氏度时,它的初始放电容量为130 mAh g(-1),在电流密度为0.5 C时仍保持111 mAh g(-1)的容量(其中1 C为148 mAh g (-1))。演示了非常好的倍率能力,其中0.06LiNbO(3-0.97)Li(1.08)Mn(1.92)O(4)阴极在50°C的速率下显示的容量超过0.55%时容量的85%。 0.06LiNbO(3-0.97)Li(1.08)Mn(1.92)O(4)阴极显示出高锂扩散系数(在55摄氏度下为1.6 X 10(-10)cm(2)s(-1)),并且低表观活化能(36.9 kJ mol(-1))。固态电解质涂层可有效防止Mn溶解并保持电极与有机液体电解质之间的高离子电导率,从而可改善下一代大功率高功率锂离子电池的设计和构造。安全。

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