LiCoO 2 for cathode of lithium ion battery has been prepared by evaporating a mixture solution of Li 2CO 3 and Co(CH 3COO) 2·4H 2O in molar ratio of 12 and sintering at different temperatures. The XRD, SEM and ...LiCoO 2 for cathode of lithium ion battery has been prepared by evaporating a mixture solution of Li 2CO 3 and Co(CH 3COO) 2·4H 2O in molar ratio of 12 and sintering at different temperatures. The XRD, SEM and electrochemical measurements showed that the product obtained from sintering at 800 ℃ for 6 hours has regular spheroid distribution, small size and the best electrochemical property.展开更多
分别采用球磨法、液相还原法和水热法在活性炭(AC)中引入金属镍,将改性后的活性炭与AB5型储氢合金组成复合材料。恒电流充放电测试表明,水热法改性活性炭/AB5合金(质量分数90%)制成的复合材料表现出最佳的电化学储氢性能,当改性活性炭含...分别采用球磨法、液相还原法和水热法在活性炭(AC)中引入金属镍,将改性后的活性炭与AB5型储氢合金组成复合材料。恒电流充放电测试表明,水热法改性活性炭/AB5合金(质量分数90%)制成的复合材料表现出最佳的电化学储氢性能,当改性活性炭含20%金属镍时,复合电极的0.2 C比容量达到316 m Ah/g,且大电流放电性能明显优于AB5合金电极。展开更多
通过液相沉淀法制备球形Ni(OH)2,与Mn(NO3)2和CH3COOLi·2 H2O混合,经高温固相法制备富锂Li1+xNi0.5Mn0.5O2正极材料。采用X射线衍射(XRD)、扫描电镜(SEM)、电化学交流阻抗及恒流充放电测试对样品的结构、形貌和电化学性...通过液相沉淀法制备球形Ni(OH)2,与Mn(NO3)2和CH3COOLi·2 H2O混合,经高温固相法制备富锂Li1+xNi0.5Mn0.5O2正极材料。采用X射线衍射(XRD)、扫描电镜(SEM)、电化学交流阻抗及恒流充放电测试对样品的结构、形貌和电化学性能进行表征。结果表明,当x=0.2时制备的富锂材料,阳离子混排低、颗粒均匀,表现出最好的电化学性能。在2.0∽4.8 V之间,20 m A/g条件下最高放电比容量为201.4 m Ah/g,60 m A/g下放电比容量仍可达到113.1m Ah/g。展开更多
文摘LiCoO 2 for cathode of lithium ion battery has been prepared by evaporating a mixture solution of Li 2CO 3 and Co(CH 3COO) 2·4H 2O in molar ratio of 12 and sintering at different temperatures. The XRD, SEM and electrochemical measurements showed that the product obtained from sintering at 800 ℃ for 6 hours has regular spheroid distribution, small size and the best electrochemical property.
文摘分别采用球磨法、液相还原法和水热法在活性炭(AC)中引入金属镍,将改性后的活性炭与AB5型储氢合金组成复合材料。恒电流充放电测试表明,水热法改性活性炭/AB5合金(质量分数90%)制成的复合材料表现出最佳的电化学储氢性能,当改性活性炭含20%金属镍时,复合电极的0.2 C比容量达到316 m Ah/g,且大电流放电性能明显优于AB5合金电极。
文摘通过液相沉淀法制备球形Ni(OH)2,与Mn(NO3)2和CH3COOLi·2 H2O混合,经高温固相法制备富锂Li1+xNi0.5Mn0.5O2正极材料。采用X射线衍射(XRD)、扫描电镜(SEM)、电化学交流阻抗及恒流充放电测试对样品的结构、形貌和电化学性能进行表征。结果表明,当x=0.2时制备的富锂材料,阳离子混排低、颗粒均匀,表现出最好的电化学性能。在2.0∽4.8 V之间,20 m A/g条件下最高放电比容量为201.4 m Ah/g,60 m A/g下放电比容量仍可达到113.1m Ah/g。