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作 者:宋建梅[1,2] 曾红梅[1] 赖琼钰[1] 黄建华[1] 赵燕[1]
机构地区:[1]四川大学化学学院,四川成都610064 [2]云南楚雄师范学院,云南楚雄675000
出 处:《电源技术》2009年第3期200-203,共4页Chinese Journal of Power Sources
摘 要:制备了V2O5/DBSA-PANI复合材料,用XRD、IR及SEM对材料进行了表征。结果表明,复合材料为片状,V2O5和DBSA-PANI之间有化学键形成;材料的恒流充放电性能测试结果表明,当电流密度为0.2~0.8mA,电压范围为-0.2~0.8V(vs.SCE),电解液为1mol/LKNO3溶液时,所得材料具有良好的电容特性,复合材料的比电容比单独的V2O5明显提高,而循环性能比单独的DBSA-PANI好。电压范围为-0.2~0.8V(vs.SCE),以2~10mV/s扫描速率进行循环伏安测试,该复合材料均表现出良好的赝电容性能。V2O5/DBSA-PANI composite materials were prepared in the paper. The sample was characterized by means of XRD, IR and SEM. The results show that the shapes of V2O5 and V2O5/DBSA-PANI are layers and bonding roles existed between V2O5 and DBSA-PANI. Its electrochemical properties were determined by cyclic voltammetry and charge-discharge tests in aqueous electrolytes. At the current density range of 0.2-0.8 mA and voltage range of -0.2-0.8 V (vs.SCE) in 1 mol/L KNO3 electrolyte, V2O5/DBSA-PANI composite materials exhibits obvious capacitive performance. In the voltage range of -0.2-0.8 V (vs.SCE) cyclic voltammetry test, V2O5/DBSA-PANI composite materials exhibits good psudocapacitive property.
关 键 词:V2O5/DBSA—PANI 超级电容器 电容性能 充放电测试
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