首页> 外文期刊>Journal of Colloid and Interface Science >High electrocapacitive performance of bowl-like monodispersed porous carbon nanoparticles prepared with an interfacial self-assembly process
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High electrocapacitive performance of bowl-like monodispersed porous carbon nanoparticles prepared with an interfacial self-assembly process

机译:用界面自组装过程制备的碗状单分散多孔碳纳米粒子的高电容性能

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Graphical abstract Bowl-like monodispersed porous carbon nanoparticles have been fabricated by a facile and scalable process and employed for high-performance supercapacitor electrode materials. Display Omitted Abstract Bowl-like monodispersed porous carbon nanoparticles (BMPCNs) have been successfully prepared with a facile and scalable approach, and the as-prepared BMPCNs are examined thoroughly by various physical characterizations. Physical measurements display that BMPCNs have the high surface area (1255m2 g?1), hierarchical porosity, a certain amount of oxygen-containing groups and high graphitization degree. These unique structure features endow BMPCNs with a high capacitance (281Fg?1 at 0.5Ag?1), excellent rate capability (209Fg?1 at 50Ag?1), and outstanding cycling stability (94.8% capacity retention after 10,000 cycles at 10Ag?1) in electrochemical double-layer capacitors, suggesting its promising applications in field of energy conversion and storage. Further, the studies on formation mechanism of BMPCNs suggest that, the CTAB wormlike micelles assembling with silica/resorcinol-formaldehyde oligomers at the interface of tetraethyl orthosilicate droplets under St?ber condition determines the morphology of BMPCNs. ]]>
机译:<![cdata [ 图形摘要 碗状单分散的多孔碳纳米粒子已由容易和可扩展的方法制造,用于高性能超级电容器电极材料。 显示省略 抽象 < CE:Abstract-SEC ID =“AS010”View =“全部”> 碗状单分散多孔碳纳米粒子(BMPCN)已成功用容易和可扩展的方法进行干扰制备,并且通过各种物理特征彻底检查了AS准备的BMPCNS。物理测量显示BMPCNS具有高表面积(1255 M 2 g α1),层次孔隙率,一定量的含氧基团和高图石化程度。这些独特的结构具有高电容的赋予BMPCNS(281 F G 1 在0.5 a g ?1 ),优异的速率能力(209 F G ?1 在50 < CE:HSP SP =“0.25”/> A G ?1 ),并且出色的循环稳定性(94.8% 10,000个循环后10,50次 A G 在电化学双层电容器中,表明其在能量转换和储存领域的有前途的应用。此外,BMPCNS的形成机制的研究表明,在ST?BER条件下与二甲基外硅酸盐液滴液体界面组装的CTAB蜗杆胶束组装在四甲基外硅酸盐液滴的界面中决定了BMPCNS的形态。 ]]>

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