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Facile preparation of porous carbons from rice husk by microwave heating for supercapacitors

机译:通过微波加热从稻壳中简便地制备多孔碳以用于超级电容器

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Porous carbons (PCs) including microporous and mesoporous carbons for supercapacitors were made from rice husk through zinc chloride (ZnCl2) activation in one– step by microwave heating with microwave power at 600 W at 20 min heating time.PCs were characterized by field emission scanning electron microscope,transmission electron microscope and x–ray diffraction.The pore structure parameters and surface chemistry of PCs were obtained by nitrogen adsorption,Fourier transform infrared spectroscopy and x–ray photoelectron spectroscopy.The results show that the average pore size of PCs increases from 2.02 nm to 5.99 nm,and the total pore volume of PCs increases from 0.75 cm3/g to 2.07 cm3/g with the mass ratio of ZnCl2/rice husk.The specific surface area of PCs passes through a maximum with the ZnCl2/rice husk mass ratio,and reaches 1727 m2/g at 3/1 of ZnCl2/rice husk mass ratio.At 4/1 of ZnCl2/rice husk mass ratio,the specific capacitance of PC (PC4/1) only decreases from 182 F/g to 171 F/g with the increase of discharge current density from 0.05 A/g to 2 A/g,possessing a capacitance retention up to 94.0% due to its low densities of surface functional groups,good conductivity and mesopore structure.The energy density of PC4/1 capacitor retains at 6.23 Wh/kg after 1000 cycles,showing perfect cycle stability.The results evidenced that microwave heating ZnCl2 activating rice husk at 20 min heating time in one–step is an efficient approach to the rapid preparation of low cost yet high performance PCs for supercapacitors.
机译:稻壳通过氯化锌(ZnCl2)活化,一步一步加热,微波辐射功率为600 W,微波加热20分钟,制得超级电容器用的多孔碳(PC),包括微孔和中孔碳。电子显微镜,透射电子显微镜和X射线衍射。通过氮吸附,傅立叶变换红外光谱和X射线光电子能谱获得了PC的孔结构参数和表面化学性质。结果表明PC的平均孔径从ZnCl2 /大米壳的质量比为2.02 nm至5.99 nm,PC的总孔容从0.75 cm3 / g增加到2.07 cm3 / g.ZnCl2 /大米的PC的比表面积最大ZnCl2 /大米壳质量比为3/1时达到1727 m2 / g.ZnCl2 /大米壳质量比为4/1时PC的比电容(PC4 / 1)仅从182 F / g减小至171 F / g4随着放电电流密度从0.05 A / g增加到2 A / g,由于其表面官能团的密度低,导电性好和介孔结构低而具有高达94.0%的电容保持率。PC4/ 1的能量密度电容器经过1000次循环后仍保持在6.23 Wh / kg,显示出良好的循环稳定性。结果表明,微波加热ZnCl2活化稻壳可以一步加热20分钟,是快速制备低成本,高性能PC的有效方法。用于超级电容器。

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