Compound Zn2Sn0.8Ti0.2O4 was synthesized by a hydrothermal method in which SnCl4-5H2O,TiCl4,ZnCl2 and N2H4-H2O were used as reactants.The composite Zn2Sn0.8Ti0.2O4/C was then prepared through a carbothermic reduction ...Compound Zn2Sn0.8Ti0.2O4 was synthesized by a hydrothermal method in which SnCl4-5H2O,TiCl4,ZnCl2 and N2H4-H2O were used as reactants.The composite Zn2Sn0.8Ti0.2O4/C was then prepared through a carbothermic reduction process using the as-prepared Zn2Sn0.8Ti0.2O4 and glucose as reactants.The structure,morphology and electrochemical properties of the as-prepared products were investigated by XRD,XPS,TEM and electrochemical measurements.In addition,electrochemical Li insertion/extraction in composite Zn2Sn0.8Ti0.2O4/C were examined by ex situ XRD and SEM.The first discharge capacity of Zn2SnO4 is about 1670.8 mA-h/g,with a capacity retain of 342.7 mA-h/g in the 40th cycle at a constant current density of 100 mA/g in the voltage range of 0.05-3.0 V.Comparing with the Zn2SnO4,some improved electrochemical properties are obtained for Zn2Sn0.8Ti0.2O4,Zn2SnO4/C and Zn2Sn0.8Ti0.2O4/C.The composite Zn2Sn0.8Ti0.2O4/C shows the best electrochemical properties,and its first discharge capacity is about 1530.0 mA-h/g,with a capacity retain of 479.1 mA-h/g the 100th cycle.展开更多
采用共沉淀法,制备了具有良好电化学性能的层状L iN i0.78Co0.2Zn0.02O2正极材料,探讨材料的物理性质对其电化学性能的影响.结果表明:电极片涂膜的厚度对其放电比容量及循环性能有很大影响;粒径的大小对首次放比容量的影响不大,但对其...采用共沉淀法,制备了具有良好电化学性能的层状L iN i0.78Co0.2Zn0.02O2正极材料,探讨材料的物理性质对其电化学性能的影响.结果表明:电极片涂膜的厚度对其放电比容量及循环性能有很大影响;粒径的大小对首次放比容量的影响不大,但对其长期循环性能的影响较大.材料的相变是放电容量衰减的主要因素之一,通过掺杂改性、优化制备工艺条件、控制材料的物理性质,有利于抑制相变,提高材料的电化学性能.展开更多
基金Project (51004028) supported by the National Natural Science Foundation of China
文摘Compound Zn2Sn0.8Ti0.2O4 was synthesized by a hydrothermal method in which SnCl4-5H2O,TiCl4,ZnCl2 and N2H4-H2O were used as reactants.The composite Zn2Sn0.8Ti0.2O4/C was then prepared through a carbothermic reduction process using the as-prepared Zn2Sn0.8Ti0.2O4 and glucose as reactants.The structure,morphology and electrochemical properties of the as-prepared products were investigated by XRD,XPS,TEM and electrochemical measurements.In addition,electrochemical Li insertion/extraction in composite Zn2Sn0.8Ti0.2O4/C were examined by ex situ XRD and SEM.The first discharge capacity of Zn2SnO4 is about 1670.8 mA-h/g,with a capacity retain of 342.7 mA-h/g in the 40th cycle at a constant current density of 100 mA/g in the voltage range of 0.05-3.0 V.Comparing with the Zn2SnO4,some improved electrochemical properties are obtained for Zn2Sn0.8Ti0.2O4,Zn2SnO4/C and Zn2Sn0.8Ti0.2O4/C.The composite Zn2Sn0.8Ti0.2O4/C shows the best electrochemical properties,and its first discharge capacity is about 1530.0 mA-h/g,with a capacity retain of 479.1 mA-h/g the 100th cycle.
文摘采用共沉淀法,制备了具有良好电化学性能的层状L iN i0.78Co0.2Zn0.02O2正极材料,探讨材料的物理性质对其电化学性能的影响.结果表明:电极片涂膜的厚度对其放电比容量及循环性能有很大影响;粒径的大小对首次放比容量的影响不大,但对其长期循环性能的影响较大.材料的相变是放电容量衰减的主要因素之一,通过掺杂改性、优化制备工艺条件、控制材料的物理性质,有利于抑制相变,提高材料的电化学性能.