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Preparation and characterization of SnO_2-Li_4Ti_5O_(12) composite by sol-gel technique 被引量:1

Preparation and characterization of SnO_2-Li_4Ti_5O_(12) composite by sol-gel technique
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摘要 SnO2-Li4Ti5O12 was prepared by sol-gel method using tin tetrachloride,lithium acetate,tetrabutylorthotitanate and aqueous ammonia as starting materials.The composite was characterized by thermogravimertric(TG)analysis and differential thermal analysis(DTA),X-ray diffractometry(XRD)and transmission electron microscopy(TEM)combined with electrochemical tests.The results show that SnO2-Li4Ti5O12 composite derived by sol-gel technique is a nanocomposite with core-shell structure, and the amorphous Li4Ti5O12 layer with 20?40 nm in thickness is coated on the surface of SnO2 particles.Electrochemical tests show that SnO2-Li4Ti5O12 composite delivers a reversible capacity of 688.7 mA·h/g at 0.1C and 93.4%of that is retained after 60 cycles at 0.2C.The amorphous Li4Ti5O12 in composite can accommodate the volume change of SnO2 electrode and prevent the small and active Sn particles from aggregating into larger and inactive Sn clusters during the cycling effectively,and enhance the cycling stability of SnO2 electrode significantly. SnO2-Li4Ti5O12 was prepared by sol-gel method using tin tetrachloride,lithium acetate,tetrabutylorthotitanate and aqueous ammonia as starting materials.The composite was characterized by thermogravimertric(TG)analysis and differential thermal analysis(DTA),X-ray diffractometry(XRD)and transmission electron microscopy(TEM)combined with electrochemical tests.The results show that SnO2-Li4Ti5O12 composite derived by sol-gel technique is a nanocomposite with core-shell structure, and the amorphous Li4Ti5O12 layer with 20?40 nm in thickness is coated on the surface of SnO2 particles.Electrochemical tests show that SnO2-Li4Ti5O12 composite delivers a reversible capacity of 688.7 mA·h/g at 0.1C and 93.4%of that is retained after 60 cycles at 0.2C.The amorphous Li4Ti5O12 in composite can accommodate the volume change of SnO2 electrode and prevent the small and active Sn particles from aggregating into larger and inactive Sn clusters during the cycling effectively,and enhance the cycling stability of SnO2 electrode significantly.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第S1期267-270,共4页 中国有色金属学报(英文版)
基金 Project(20873054)supported by the National Natural Science Foundation of China Project(2005037700)supported by Postdoctoral Science Foundation of China Project(07JJ3014)supported by Hunan Provincial Natural Science Foundation of China Project(07A058)supported by Scientific Research Fund of Hunan Provincial Education Department Project(2004107)supported by Postdoctoral Science Foundation of Central South University
关键词 SNO2 LI4TI5O12 COMPOSITE sol-gel method lithium ion batteries SnO2 Li4Ti5O12 composite sol-gel method lithium ion batteries
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