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Development of Composite Material Based on Porous Microfibrous Carbon and Zinc Oxide for Energy Storage Application

机译:多孔微纤维碳与氧化锌复合材料在储能中的应用

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The development of efficient energy storage devices is very important challenge for the progress of the renewable energy. One of the promising energy storage systems is the electrochemical capacitor. In this work, the composite material based on porous microfibrous carbon and zinc oxide by electrodeposition technique for electrochemical capacitor was synthetized and characterized. The formation mechanism of zinc oxide on porous microfibrouse carbon paper was proposed. This mechanism is constituted of three steps (i) production of OH- ions, (ii) creation of zinc hydroxide Zn (OH)2, (iii) transformation of zinc hydroxide Zn (OH)2 to zinc oxide ZnO. The composite materials based on a porous microfibrouse carbon paper and zinc oxide were studied by cyclic voltammetry and the electrochemical impedance. The synthesized electrodes show a good capacitive behavior. The electrodeposition time of 60 minute allows the formation of excellent electrode for electrochemical capacitor.
机译:高效储能装置的发展对于可再生能源的发展是非常重要的挑战。电化学电容器是一种有前途的储能系统。在这项工作中,通过电沉积技术合成和表征了基于多孔微纤维碳和氧化锌的电化学电容器的复合材料。提出了在多孔微纤维碳纸上形成氧化锌的机理。该机理由三个步骤组成:(i)产生OH-离子,(ii)生成氢氧化锌Zn(OH)2,(iii)氢氧化锌Zn(OH)2转化为氧化锌ZnO。通过循环伏安法和电化学阻抗研究了基于多孔微纤维碳纸和氧化锌的复合材料。合成电极显示出良好的电容性能。 60分钟的电沉积时间可以形成用于电化学电容器的极好的电极。

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