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纤维素和碳纳米管纳米复合纤维的超级电容性能。

Supercapacitance from cellulose and carbon nanotube nanocomposite fibers.

机构信息

Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences , Shenzhen 518005, China.

出版信息

ACS Appl Mater Interfaces. 2013 Oct 23;5(20):9983-90. doi: 10.1021/am403622v. Epub 2013 Oct 11.

Abstract

Multiwalled carbon nanotube (MWNT)/cellulose composite nanofibers have been prepared by electrospinning a MWNT/cellulose acetate blend solution followed by deacetylation. These composite nanofibers were then used as precursors for carbon nanofibers (CNFs). The effect of nanotubes on the stabilization of the precursor and microstructure of the resultant CNFs were investigated using thermogravimetric analysis, transmission electron microscopy and Raman spectroscopy. It is demonstrated that the incorporated MWNTs reduce the activation energy of the oxidative stabilization of cellulose nanofibers from ∼230 to ∼180 kJ mol(-1). They also increase the crystallite size, structural order, and electrical conductivity of the activated CNFs (ACNFs). The surface area of the ACNFs increased upon addition of nanotubes which protrude from the fiber leading to a rougher surface. The ACNFs were used as the electrodes of a supercapacitor. The electrochemical capacitance of the ACNF derived from pure cellulose nanofibers is demonstrated to be 105 F g(-1) at a current density of 10 A g(-1), which increases to 145 F g(-1) upon the addition of 6% of MWNTs.

摘要

多壁碳纳米管(MWNT)/纤维素复合纳米纤维已通过静电纺丝 MWNT/纤维素醋酸酯共混溶液,然后进行脱乙酰化来制备。这些复合纳米纤维随后被用作碳纳米纤维(CNF)的前体。使用热重分析、透射电子显微镜和拉曼光谱研究了纳米管对前体的稳定化和所得 CNF 的微观结构的影响。结果表明,掺入的 MWNTs 将纤维素纳米纤维的氧化稳定化的活化能从约 230 kJ mol(-1)降低至约 180 kJ mol(-1)。它们还增加了活化 CNF(ACNF)的微晶尺寸、结构有序性和电导率。由于纳米管从纤维中突出,表面面积随着纳米管的添加而增加,导致表面更加粗糙。ACNF 被用作超级电容器的电极。证明由纯纤维素纳米纤维衍生的 ACNF 的电化学电容在电流密度为 10 A g(-1)时为 105 F g(-1),而在添加 6%的 MWNTs 时增加到 145 F g(-1)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7d2/3807724/804f376fc5a2/am-2013-03622v_0002.jpg

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