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Effect of chitosan addition on the structure and capacitive characteristics of electrodeposited manganese oxides

机译:壳聚糖添加对电沉积锰氧化物结构和电容特性的影响

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Nano-structured MnO2-chitosan hybrid composite electrodes containing low and high chitosan's Mw were synthesized by one-step cathodic electrodeposition on nickel foam substrate for electrochemical capacitors (ECs) application. The effect of chitosan molecular weight (Mw) on the structure and capacitive behaviour of the tailored electrodes was examined. The electrodes have been characterized using X-ray diffraction (XRD), scanning electron microscopy (SEM), Fourier transform infrared (FTIR) spectroscopy, cyclic voltammetry, galvanostatic charge-discharge, and electrochemical impedance spectroscopy. The presence of CH promotes both ion and electron transport in the matrix of MnO2. Furthermore, the use of CH with its inherent binding properties allowed the formation of adherent and cracks free deposits. The MnO2-chitosan hybrid nanocomposite electrodes showed better specific capacitance and rate capability than MnO2 electrode. The highest specific capacitance of 424 F/g was obtained for the MnO2-chitosan composite electrode with low chitosan's Mw at a current density of 1 mA/cm2. The electrode retained a very stable capacitance over 400 cycles by charging and discharging at 3 mA/cm2, as the capacity loss is only 3%, indicative of long term electrochemical cycling stability.
机译:纳米结构MnO 2 含有低壳聚糖M W 的含有低壳聚糖的混合复合电极,通过单步阴极电沉积在电化学电容器(ECS)应用中的镍泡沫基板上合成。检查了壳聚糖分子量(M W )对定制电极结构和电容性能的影响。已经使用X射线衍射(XRD),扫描电子显微镜(SEM),傅里叶变换红外(FTIR)光谱,循环伏安法,电镀电荷 - 放电和电化学阻抗光谱,以及电化学阻抗光谱扫描电极。 CH的存在促进了MnO 2 基质中的离子和电子传输。此外,使用CH的固有结合性能允许形成粘附和裂缝的自由沉积物。 MnO 2 -CHITOSAN杂交纳米复合电极显示出比MNO 2 电极更好的特定电容和速率能力。用于MNO 2 - 用低壳聚糖的M W 以1mA / cm 的电流密度,获得424f / g的最高特异性电容。 2 。通过充电和排出3mA / cm 2 ,电极通过400次循环保持非常稳定的电容,因为容量损耗仅为3%,表示长期电化学循环稳定性。

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