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碳纳米纤维接枝在活性炭上作为高功率超级电容器的电极。

Carbon nanofibers grafted on activated carbon as an electrode in high-power supercapacitors.

机构信息

Department of Polymer and Carbonaceous Materials, Wrocław University of Technology, Gdańska 7/9, 50-344 Wrocław, Poland.

出版信息

ChemSusChem. 2013 Aug;6(8):1516-22. doi: 10.1002/cssc.201300095. Epub 2013 Jun 21.

DOI:10.1002/cssc.201300095
PMID:23794416
Abstract

A hybrid electrode material for high-power supercapacitors was fabricated by grafting carbon nanofibers (CNFs) onto the surface of powdered activated carbon (AC) through catalytic chemical vapor deposition (CCVD). A uniform thin layer of disentangled CNFs with a herringbone structure was deposited on the carbon surface through the decomposition of propane at 450 °C over an AC-supported nickel catalyst. CNF coating was controlled by the reaction time and the nickel content. The superior CNF/AC composite displays excellent electrochemical performance in a 0.5 mol L(-1) solution of K2 SO4 due to its unique structure. At a high scan rate (100 mV s(-1) ) and current loading (20 A g(-1) ), the capacitance values were three- and fourfold higher than those for classical AC/carbon black composites. Owing to this feature, a high energy of 10 Wh kg(-1) was obtained over a wide power range in neutral medium at a voltage of 0.8 V. The significant enhancement of charge propagation is attributed to the presence of herringbone CNFs, which facilitate the diffusion of ions in the electrode and play the role of electronic bridges between AC particles. An in situ coating of AC with short CNFs (below 200 nm) is a very attractive method for producing the next generation of carbon composite materials with a high power performance in supercapacitors working in neutral medium.

摘要

通过催化化学气相沉积(CCVD)将碳纳米纤维(CNF)接枝到粉末状活性炭(AC)表面,制备了用于高功率超级电容器的混合电极材料。在 AC 负载的镍催化剂上,通过在 450°C 下分解丙烷,在碳表面上沉积了具有鱼骨结构的均匀的无缠结 CNF 薄层。CNF 涂层受反应时间和镍含量控制。由于其独特的结构,CNF/AC 复合材料在 0.5 mol L(-1) K2 SO4 溶液中表现出优异的电化学性能。在高扫描速率(100 mV s(-1) )和电流密度(20 A g(-1) )下,电容值比经典的 AC/炭黑复合材料高 3 到 4 倍。由于这个特点,在中性介质中电压为 0.8 V 时,在很宽的功率范围内可以获得 10 Wh kg(-1) 的高能量。电荷传递的显著增强归因于鱼骨形 CNF 的存在,它促进了离子在电极中的扩散,并在 AC 颗粒之间起到了电子桥的作用。在 AC 上原位涂覆短的 CNF(低于 200nm)是一种非常有吸引力的方法,可以制备出在中性介质中工作的具有高功率性能的下一代碳复合材料。

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