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首页> 外文期刊>ACS applied materials & interfaces >Li0.5Ni0.5Ti1.5Fe0.5(O-P(4))(3)/C Electrode Material for Lithium Ion Batteries Exhibiting Faster Kinetics and Enhanced Stability
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Li0.5Ni0.5Ti1.5Fe0.5(O-P(4))(3)/C Electrode Material for Lithium Ion Batteries Exhibiting Faster Kinetics and Enhanced Stability

机译:LI0.5NI0.5TI1.5FE0.5(O-P(4))(3)/ C用于锂离子电池的电极材料,表现出更快的动力学和增强的稳定性

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摘要

Natrium super ionic conductor (NASICON) materials providing attractive properties such as high ionic conductivity and good structural stability are considered as very promising materials for use as electrodes for lithium- and sodium-ion batteries. Herein, a new high-performance electrode material, Li0.5Ni0.5Ti1.5Fe0.5(PO4)(3)/C, was synthesized via the sol-gel method and was electrochemically tested as an anode for lithium ion batteries, providing enhanced electrochemical performance as a result of nickel substitution into the lithium site in the LiTi2(PO4)(3) family of materials. The synthesized material showed good ionic conductivity, excellent structural stability, stable long-term cycling performance, and improved high rate cycling performance compared to LiTi2(PO4)(3). The Li0.5Ni0.5Ti1.5Fe0.5(PO4)(3)/C electrode delivered reversible capacities of about 93 and 68% of its theoretical one at current rates of 0.1 C (6.42 mA.g(-1)) after 100 cycles and 5 C (320.93 mA.g(-1)) after 1000 cycles, respectively. Theoretically, three Li+ ions can be inserted into the vacancies of the Li0.5Ni0.5Ti1.5Fe0.5(PO4)(3)/C structure. However, when the electrode is discharged to 0.5 V, more than three Li+ ions are inserted into the NASICON structure, leading to its structural transformation, and thus to an irreversible electrochemical behavior after the first discharge process.
机译:提供具有高离子电导率和良好结构稳定性的有吸引力的性质的纳米超离子导体(NASICON)材料被认为是非常有前途的材料,用作锂和钠离子电池的电极。这里,通过溶胶 - 凝胶法合成了一种新的高性能电极材料Li0.5Ni0.5Ti1.5Fe0.5(PO4)(3)/ C.用电化学测试为锂离子电池的阳极,提供增强电化学性能由于镍替代到LITI2(PO4)(3)族材料中的锂遗址。合成材料显示出良好的离子电导率,优异的结构稳定性,稳定的长期循环性能,以及与LITI2(PO4)(3)相比提高的高速率循环性能。 LI0.5NI0.5TI1.5FE0.5(PO4)(3)/ C电极以100℃(6.42 mA.G(-1))以0.1c(6.42 mA.G(-1))的定期提供约93和68%的可逆容量。在1000个循环后,循环和5℃(320.93 ma.g(-1))。理论上,可以将三种Li +离子插入Li0.5Ni0.5Ti1.5Fe0.5(PO4)(3)/ C结构的空位中。然而,当电极被排出至0.5V时,将多于三个Li +离子插入Nasicon结构中,导致其结构变换,因此在第一放电过程之后的不可逆电化学行为。

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