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Influence of Surface Chemistry on the Electrochemical Performance of Biomass-Derived Carbon Electrodes for its Use as Supercapacitors

机译:表面化学对其用作超级电容器的生物质碳电极的电化学性能的影响

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摘要

Activated carbons prepared by chemical activation from three different types of waste woods were treated with four agents: melamine, ammonium carbamate, nitric acid, and ammonium persulfate, for the introduction of nitrogen and oxygen groups on the surface of materials. The results indicate that the presence of the heteroatoms enhances the capacitance, energy density, and power density of all samples. The samples treated with ammonium persulfate show the maximum of capacitance of 290 F g−1 while for the melamine, ammonium carbamate, and nitric acid treatments, the samples reached the maximum capacitances values of 283, 280, and 455 F g−1 respectively. This remarkable electro-chemical performance, as the high specific capacitances can be due to several reasons: i) The excellent and adequate textural characteristics makes possible a large adsorption interface for electrolyte to form the electrical double layer, leading to a great electrochemical double layer capacitance. ii) The doping with hetero-atoms enhances the surface interaction of these materials with the aqueous electrolyte, increasing the accessibility of electrolyte ions. iii) The hetero-atoms groups can also provide considerable pseudo-capacitance improving the overall capacitance.
机译:用三种试剂(三聚氰胺,氨基甲酸铵,硝酸和过硫酸铵)处理了从三种不同类型的废木中化学活化制得的活性炭,以将氮和氧基团引入材料表面。结果表明,杂原子的存在增强了所有样品的电容,能量密度和功率密度。用过硫酸铵处理的样品显示最大电容为290 F g -1 ,而对于三聚氰胺,氨基甲酸铵和硝酸处理,样品达到的最大电容值为283、280和分别为455 F g -1 。这种出色的电化学性能,因为高的比电容可能是由于以下几个原因:i)优异而充分的质构特性使电解质具有较大的吸附界面以形成双电层成为可能,从而导致了较大的电化学双层电容。 ii)杂原子掺杂增强了这些材料与水性电解质的表面相互作用,从而增加了电解质离子的可及性。 iii)杂原子基团还可提供可观的伪电容,从而改善整体电容。

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