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Fast fabrication of NiO@graphene composites for supercapacitor electrodes: Combination of reduction and deposition

机译:快速制备用于超级电容器电极的NiO @石墨烯复合材料:还原和沉积的结合

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摘要

Graphene-based inorganic composites have been attracting more and more attention since the attachment of inorganic nanoparticles instead of conducting polymeric materials to graphene sheets turns out higher capacitances and good capacity retention. Here we report a fast fabrication method to prepare NiO@graphene composite modified electrodes for supercapacitors. By this method, preparation of electrochemical active materials of NiO/graphene and modification of the electrode can be simultaneously performed, which is achieved separately by traditional method. Moreover, the problem of poor adhesion of active materials on the surface of the electrode can be well solved. The NiO particles introduced to the films exhibit pseudocapacitive behavior arising from the reversible Faradaic transitions of Ni(II)/Ni(III) and greatly improve the capacitance of the electrodes. With the increase in NiO content, highly reduced graphene can be obtained during cyclic voltammetry sweeping, leading to the increase in the electrode capacitance. The highest specific capacitance of the constructed electrodes can reach 1258 F/g at a current density of 5 A/g.
机译:石墨烯基无机复合材料已引起越来越多的关注,因为无机纳米粒子的附着而不是将聚合物材料传导到石墨烯片上,结果显示出更高的电容和良好的容量保持率。在这里,我们报告了一种快速制备方法来制备用于超级电容器的NiO @石墨烯复合改性电极。通过这种方法,可以同时进行NiO /石墨烯的电化学活性材料的制备和电极的修饰,这可以通过传统方法分别实现。而且,可以很好地解决活性物质在电极表面上的粘附性差的问题。引入到薄膜中的NiO颗粒表现出由Ni(II)/ Ni(III)的可逆法拉第跃迁引起的伪电容行为,并大大提高了电极的电容。随着NiO含量的增加,在循环伏安扫描期间可以得到高度还原的石墨烯,从而导致电极电容的增加。在5 A / g的电流密度下,所构造电极的最高比电容可达到1258 F / g。

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