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Synthesis of mesoporous carbons for supercapacitors from coal tar pitch by coupling microwave-assisted KOH activation with a MgO template

机译:微波辅助KOH活化与MgO模板偶联从煤焦油沥青合成超级电容器用介孔碳

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Mesoporous carbons (MCs) for supercapacitors were prepared from coal tar pitch by a microwave-assisted one-step process coupling the potassium hydroxide (KOH) activation and magnesium oxide (MgO) template. MCs were characterized by scanning electron microscope and X-ray diffraction. The results show that the specific surface area (S_(Bet)), micropore volume and specific capacitance of MCs made by microwave heating as well as the energy density of MC capacitors pass through a maximum with increasing mass of MgO and the relative mass ratio of KOH/pitch. The S_(BEt) of MCs varies from 1003 to 1394 m~2/g. The S_(Bet) and total pore volume of MC and microporous carbon made by microwave heating are bigger than that made by conventional heating. Under optimum conditions with the masses of coal tar pitch, MgO, KOH at 9 g, 12 g, 6 g, and the microwave power at 600 W, MC (MC_(9-12-6)) made at 30 min heating time shows a high specific capacitance of 224 F/g in 6 M KOH aqueous electrolyte after 1000 cycles. The results have shown that microwave-assisted rapid KOH activation coupled with the MgO template is an efficient one-step approach to the preparation of low cost yet high performance MCs for supercapacitors.
机译:超级电容器的介孔碳(MCs)是由煤焦油沥青通过微波辅助的一步法结合氢氧化钾(KOH)活化和氧化镁(MgO)模板制备的。 MC通过扫描电子显微镜和X射线衍射表征。结果表明,随着MgO质量的增加和相对质量比的增加,微波加热制备的MC的比表面积(S_(Bet)),微孔体积和比电容以及MC电容器的能量密度最大。 KOH /间距MC的S_(BEt)在1003至1394 m〜2 / g之间变化。微波加热制得的MC和微孔碳的S_(Bet)和总孔体积比常规加热制得的大。在最佳条件下,煤焦油沥青,MgO,KOH的质量分别为9 g,12 g,6 g,微波功率为600 W,加热时间为30分钟的MC(MC_(9-12-6))显示1000次循环后,在6 M KOH水性电解液中具有224 F / g的高比电容。结果表明,微波辅助的快速KOH活化结合MgO模板是制备超级电容器的低成本,高性能MC的有效一步方法。

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