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Excellent supercapacitance performance of 3-D mesoporous carbon with large pores from FDU-12 prepared using a microwave method

机译:使用微波法制备的FDU-12具有大孔的优异超级电容性能。使用微波法制备

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摘要

Highly ordered and three-dimensional (3-D) mesoporous carbon materials were prepared through a nanohard templating approach using FDU-12 silica with tunable pore sizes as a template, which was synthesized via a microwave-assisted method. Powder XRD and microscopic techniques such as HR-TEM, HR-SEM, and N-2 adsorption-desorption techniques were employed to characterize the structure and textural properties of the prepared mesoporous carbon samples. The characterization results reveal that all the mesoporous carbon samples show a 3-D porous mesostructure with tunable pore diameters (5.7 to 9.4 nm) and a large specific surface area in the range from 451 to 1251 m(2) g(-1). The supercapacitive behavior of the cubic structured mesoporous carbons was determined using cyclic voltammetry, electrochemical impedance and charge-discharge measurements. The cubic mesoporous carbon materials exhibit a superior capacitive performance with a high specific capacitance value of 315.3 F g(-1) at the current density of 1 A g(-1), which is much higher than that of hexagonally-ordered mesoporous carbon with large pore diameters, activated carbon, and carbon nanotubes. The materials also show excellent cyclic stability and extremely low resistance. The superior specific capacitance of these materials is attributed to the combination of excellent surface properties such as large specific surface area, large pore volume and uniform pore diameter, spherical morphology, and a 3-D porous system with cage-type pores.
机译:通过使用FDU-12二氧化硅用可调谐孔径作为模板的纳米型模板方法制备高度有序和三维(3-D)介孔碳材料,其通过微波辅助方法合成。使用粉末XRD和微观技术,如HR-TEM,HR-SEM和N-2吸附 - 解吸技术,表征制备的中孔碳样品的结构和纹理性质。表征结果表明,所有介孔的碳样品都显示出具有可调谐孔径(5.7至9.4nm)的3-D多孔型腹腔结构,并且在451至1251m(2)g(-1)范围内的大的比表面积。使用循环伏安法,电化学阻抗和充放电测量测定立方结构介孔碳的超级电容性能。立方介孔碳材料具有优异的电容性能,具有315.3fg(-1)的高比电容值,其电流密度为1ag(-1),高于六角有序的介孔碳的电流密度大孔径,活性炭和碳纳米管。该材料还显示出优异的循环稳定性和极低的电阻。这些材料的优异特定电容归因于优异的表面性质,例如大的比表面积,大孔体积和均匀的孔径,球形形态,以及带笼式孔隙的3-D多孔系统。

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  • 来源
    《RSC Advances》 |2018年第31期|共8页
  • 作者单位

    Univ Newcastle UON Fac Engn &

    Built Environm GICAN Callaghan NSW 2308 Australia;

    Univ Newcastle UON Fac Engn &

    Built Environm GICAN Callaghan NSW 2308 Australia;

    Univ South Australia Div Informat Technol Energy &

    Environm DivITEE FII Adelaide SA 5095 Australia;

    Univ Newcastle UON Fac Engn &

    Built Environm GICAN Callaghan NSW 2308 Australia;

    Univ Newcastle UON Fac Engn &

    Built Environm GICAN Callaghan NSW 2308 Australia;

    King Saud Univ Dept Sci Riyadh Saudi Arabia;

    Univ Newcastle UON Fac Engn &

    Built Environm GICAN Callaghan NSW 2308 Australia;

    Univ Newcastle UON Fac Engn &

    Built Environm GICAN Callaghan NSW 2308 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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