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Chem. J. Chinese Universities

• 研究论文 • Previous Articles     Next Articles

Synthesis and Properties of Nanosized Tin-zinc Composite Oxides as Lithium Storage Materials

YUAN Zheng-Yong1,2,3, YUAN Liang-Jie1, SUN Ju-Tang1

  

    1. College of Chemistry and Molecular Science, Wuhan 430072, China;
    2. Ningbo Free Trade Zone Postdoctor Workstation, Ningbo 315800, China;
    3. Ningbo Best Winning Technology Limited Company, Ningbo 315800, China
  • Received:2006-04-06 Revised:1900-01-01 Online:2006-12-10 Published:2006-12-10
  • Contact: SUN Ju-Tang

Abstract: The precursor was prepared with liquid precipitation method. A series of tin-zinc composite oxides with different components and structures were synthesized as the anode materials for lithium ion batteries when the precursor was pyrolyzed at different temperatures. The products were characterized by XRD, TEM and electrochemical measurements. The reversible capacity of amorphous ZnSnO3 is 844 mA·h/g in the first cycle and the charge capacity is 695 mA·h/g in the 10th cycle. The reversible capacity of ZnO·SnO2 is 845 mA·h/g in the first cycle and the charge capacity is 508 mA·h/g in the 10th cycle. The reversible capacity of SnO2·Zn2SnO4 is 758 mA·h/g in the first cycle and the charge capacity is 455 mA·h/g in the 10th cycle. The results show that amorphous ZnSnO3 exhibits the best electrochemical property among all of the tin-zinc composite oxides. With the formation of crystallites in the samples, the electrochemical property of tin-zinc composite oxides decreases.

Key words: Tin-zinc composite oxides, Lithium ion battery, Lithium storage materials

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