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Synthesis and Electrochemical Performance of Mesoporous Carbon Foams by Microemulsion Method

机译:微乳液法的介孔碳泡沫的合成与电化学性能

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In this paper, we demonstrated the preparation and electrochemical performance of mesoporous carbon foams as electrode materials for ultracapacitors. By using n-octane as oil phase, cetyltrimethylammonium bromide (CTAB) and butanol as emulsifiers, resorcinol and formaldehyde dissolved in water as the aqueous phase, an O/W microemulsion system was obtained. Mesoporous carbon foams (MCFs) were prepared by the polymerization of the O/W microemulsion, followed by drying and carbonization and subsequently activation at 1273 K by KOH under nitrogen atmosphere. The mesoporous carbon foams were characterized by scanning electron microscopy (SEM) and Brunauer-Emmett-Teller (BET) analyzer. The results show that MCFs have specific surface area of 666.7 m~2/g, total pore volume of 0.36 cm~3/g and the most probable pore size of 4 nm. The electrochemical properties of the resultant mesoporous carbon foams have been investigated by cyclic voltammetry (CV) and galvanostatic charge-discharge with a three-electrode system in electrolyte of 6 mol/L KOH solution. The CV curves show quite rectangular shape under the scan rate of 5-20 mV/s, suggesting a typical nonfaradic adsorption/desorption reaction. The mesoporous carbon foams possess linear galvanostatic discharge curves under the current densities of 10-50 mA/cm~2 and corresponding specific capacitance values are 132.6-172.1 F/g. Thus the MCFs have good electrochemical performance and they provide an important candidate for electrode materials used in ultracapacitors.
机译:在本文中,我们证明了介孔碳泡沫的制备和电化学性能作为超超容器的电极材料。通过使用N-辛烷作为油相,将甲基三甲基溴化铵(CTAB)和丁醇作为乳化剂,溶解在水中的乳蛋白和甲醛作为水相,得到O / W微乳液系统。通过聚合O / W微乳液制备介孔碳泡沫(MCF),然后通过干燥和碳化,随后在氮气氛下通过KOH在1273k下激活。通过扫描电子显微镜(SEM)和Brunauer-Emmett-Teller(BET)分析仪,表征了介孔的碳泡沫。结果表明,MCF的表面积为666.7m〜2 / g,总孔体积为0.36cm〜3 / g,最可能的孔径为4nm。已经通过循环伏安法(CV)和电解质的电解质为6mol / L KOH溶液的三电极系统研究了所得介孔碳泡沫的电化学性质。 CV曲线在5-20mV / s的扫描速率下显示出相当的矩形形状,表明典型的非胆碱吸附/解吸反应。中孔碳泡沫具有在10-50mA / cm〜2的电流密度下的线性镀锌曲线,并且相应的特定电容值为132.6-172.1f / g。因此,MCF具有良好的电化学性能,并且它们为超级电容器使用的电极材料提供了重要候选者。

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