节点文献
热处理及碳纳米管复合对δ-MnO2超电容行为的影响
Influences of heat treatment and CNT compounding on supercapacitive behaviors of δ-MnO2
【摘要】 以高锰酸钾(KMnO4)和硝酸锰[Mn(NO3)2]为反应物,通过液相氧化还原沉淀反应制备出纳米MnO2电极材料,并进行不同温度的热处理。此外,还用同样方法在碳纳米管(CNT)存在的条件下制备出经200℃热处理的纳米MnO2/CNT复合电极材料。采用X射线衍射(XRD)、红外光谱(IR)、透射电镜(TEM)和BET比表面面积测试方法对材料进行了表征,研究了热处理温度和CNT复合对纳米MnO2在1 mol/L LiOH电解质中电化学性能的影响。电化学研究结果表明,经200℃热处理的纳米MnO2具有较高的比电容,但循环稳定性不佳。经200℃热处理的含10%质量分数碳纳米管的纳米MnO2/CNT复合电极材料具有较好的循环稳定性和较高的比电容。
【Abstract】 Nanostructured MnO2 electrode materials were prepared by liquid-phase precipitation reaction starting with potassium permanganate(KMnO4) and manganese nitrate [Mn(NO3)2] reactants,followed by heat treatment at different temperatures.In addition,a nano-MnO2/carbon nanotube(CNT) composite electrode material was also prepared using the same method in the presence of CNT and heat treatment at 200 ℃.The materials were characterized by X-ray diffraction(XRD),infrared spectroscopy(IR),transmission electron microscope(TEM) and Brunauer-Emmett-Teller(BET) specific surface area measurement techniques.The influences of heat treatment and CNT compounding on electrochemical properties of the materials in 1 mol/L LiOH electrolyte were investigated.The nano-MnO2 heat treated at 200 ℃ exhibits a higher specific capacitance with poor cycling stability.However,good cycling stability as well as high specific capacitance is achieved for the nano-MnO2/CNT composite with 10% CNT and heat treatment at 200 ℃.
【Key words】 nanostructured MnO2; liquid-phase precipitation; heat treatment; carbon nanotube composite; lithium hydroxide electrolyte; electrochemical performance;
- 【文献出处】 电源技术 ,Chinese Journal of Power Sources , 编辑部邮箱 ,2011年11期
- 【分类号】TM53
- 【被引频次】1
- 【下载频次】170