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The production of hydrochar-based hierarchical porous carbons for use as electrochemical supercapacitor electrode materials

机译:用作电化学超级电容器电极材料的基于水炭的分级多孔碳的生产

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A comparative study of various hydrochar-based porous carbons was carried out. These porous carbons, synthesized from biomass by H_3PO_4, NaOH and KOH activation, were examined for use in supercapacitors. The micropores and mesopores had been introduced into the hydrochar simultaneously. Porous carbons exhibited different electrochemical performance due to the difference of their porosity. The prepared carbons showed a hierarchical porous structure, the corresponding BET surface areas and pore volumes were 1355-3322m~2/g and 1.45-2.53cm~3/g. The highest specific capacitance was 179.4F/g at a current density of 6.25A/g, and appeared to be a promising electrode material for supercapacitors.
机译:进行了各种基于水炭的多孔碳的比较研究。这些由生物质通过H_3PO_4,NaOH和KOH活化合成的多孔碳已被检查用于超级电容器。将微孔和中孔同时引入到炭中。多孔碳由于其孔隙率的差异而表现出不同的电化学性能。所制备的碳表现出分级的多孔结构,相应的BET表面积和孔体积为1355-3322m〜2 / g和1.45-2.53cm〜3 / g。在6.25A / g的电流密度下,最高比电容为179.4F / g,似乎是用于超级电容器的有希望的电极材料。

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