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Synthesis of Zr Doped Li4Ti5O12 by a High-Energy Ball-Milling Modified Solid-State Method
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    Abstract:

    Zr4+ doped Li4Ti5O12 was synthesized from Li2CO3, ZrO2 and tetrabutyl titanate by a modified solid-state method. The effects of the in-situ coating, high energy ball-milling and Zr-doping on crystalline structure, particle size, morphology and electrochemical performance of Li4Ti5O12 were investigated. The samples were tested by XRD, SEM and electrochemical workstation. The results show that the in-situ coating and ball-milling can decrease the particle size and prevent the aggregation of nanoparticles. Zr-doping obviously improves the rate capability of Li4Ti5O12 via the generation of less electrode polarization and higher Li+ diffusion coefficient. Li4Ti4.95Zr0.05O12 exhibits an excellent rate capability and cycling stability. At the charge-discharge rate of 0.5 and 40C, its discharge capacities are 176 and 52 mAh·g-1, respectively. After 10 cycles, there is less than 0.5% reduction in reversible capacity at 1, 2, 5, 10, 20 and 40 C. Compared to Ce-doping, it also shows better crystallization and electrochemical performance due to its smaller ionic radius.

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[Zhang Yaoyao, Wang Dan, Wang Yuanyuan, Zhang Chunming, He Dannong, Xia Yongyao. Synthesis of Zr Doped Li4Ti5O12 by a High-Energy Ball-Milling Modified Solid-State Method[J]. Rare Metal Materials and Engineering,2014,43(9):2237~2241.]
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History
  • Received:September 29,2013
  • Revised:
  • Adopted:
  • Online: February 25,2015
  • Published: