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N-Doped yolk-shell carbon nanotube composite for enhanced electrochemical performance in a supercapacitor

机译:n型yolk-shell碳纳米管复合材料提高电化学性能超级电容器

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摘要

Carbon nanotubes (CNTs) have been intensively studied as electrode materials in supercapacitors due to their unique tubular structure, high mechanical strength, and excellent conductivity. However, the low surface area, poor pore distribution and inert surface severely limit their electrochemical performance. Herein, a process of co-assembly of CNTs with 1-cetyl-3-methylimidazolium bromide ([C(16)Mim]Br), tetraethoxysilane and resorcinol/formaldehyde resin (RF) is used to prepare a series of composites of CNTs with mesoporous carbon (MC/CNT). The amount of CNTs used strongly affects the structures of the MC/CNT composite, in which the composite structure is adjusted from yolk-shell CNTs combined with folded MC spheres to uniform yolk-shell CNTs, and then to CNTs with uniformly located irregular carbon fragments. The use of [C(16)Mim]Br effectively assists the assembly of the RF/silica hybrid on the CNTs due to the electrostatic interaction among them, and this also leads to N-doping in the MC/CNT composite. The existence of MC provides uniform mesopores and increases the surface area of the composite materials, offers rich active sites, and at the same time, the CNTs supply sp(2)-hybridized carbon which benefits the conductivity. As the electrode material in the supercapacitor, MC/CNT with a uniform yolk-shell structure shows high electrochemical performance, demonstrating its excellent promise for energy storage applications.
机译:碳纳米管已经密集研究了在超级电容器电极材料由于他们独特的管状结构,高机械强度和优异的导电性。然而,低表面积,可怜的孔隙分布和惰性表面严重限制其电化学性能。co-assembly的碳纳米管的过程1-cetyl-3-methylimidazolium溴化([C (16) Mim] Br), tetraethoxysilane和间苯二酚/甲醛树脂(RF)使用准备一系列的碳纳米管复合材料介孔碳(MC /问)。使用强烈影响的结构MC /问复合,复合结构调整从yolk-shell碳纳米管结合折叠MC球体均匀yolk-shell碳纳米管,然后与均匀碳纳米管位于不规则碳碎片。[C (16) Mim] Br有效地协助装配射频/二氧化硅纳米管由于混合其中静电相互作用,这也会导致N-doping MC / CNT复合。MC的存在提供了统一的中孔并增加复合材料的表面积材料,提供丰富活跃的网站,和在同时,碳纳米管供应sp(2)杂化碳效益电导率。超级电容器电极材料,MC /问统一yolk-shell结构显示高电化学性能,证明其优秀的承诺对能源存储应用程序。

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