Synthesis and characterization of spinel Li4Ti5O12 anode material by oxalic acid-assisted sol–gel method
Synthesis and characterization of spinel Li4Ti5O12 anode material by oxalic acid-assisted sol–gel method
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DOI:
10.1016/j.jpowsour.2005.09.063
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发表时间:
2006-08
影响因子:
9.2
通讯作者:
Yan-Jing Hao;Q. Lai;Ji-Zheng Lu;Hong-li Wang;Yuan-Duan Chen;X. Ji
中科院分区:
文献类型:
--
作者:
Yan-Jing Hao;Q. Lai;Ji-Zheng Lu;Hong-li Wang;Yuan-Duan Chen;X. Ji
Anode material Li4Ti5O12for lithium-ion batteries has been prepared by a novel sol–gel method with oxalic acid as a chelating agent and Li2CO3and tetrabutyl titanate [Ti(OC4H9)4] as starting materials. Various initial conditions were studied in order to find the optimal conditions for the synthesis of Li4Ti5O12. Oxalic acid used in this method functioned as a fuel, decomposed the metal complexes at low temperature and yielded the free impurity Li4Ti5O12compounds. Thermal analyses (TG–DTA) and XRD data show that powders grown with a spinel structure (Fd3m space group) have been obtained at 800°C for 16h. SEM analyses indicated that the prepared Li4Ti5O12powders had a uniform cubic morphology with average particle size of 200nm. The influence of synthesis conditions on the electrochemical properties was investigated and discussed. The discharge capacity of Li4Ti5O12synthesized with an oxalic acid to titanium ratio R=1.0 was 171mAhg−1in the first cycle and 150mAhg−1after 35 cycles under an optimal synthesis condition at 800°C for 20h. The very flat discharge and charge curves indicated that the electrochemical reaction based on Ti4+/Ti3+redox couple was a typical two-phase reaction.