Lignin-based carbon fibers: Carbon nanotube decoration and superior thermal stability

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Abstract

Lignin-based carbon fibers (CFs) decorated with carbon nanotubes (CNTs) were synthesized and their structure, thermal stability and wettability were systematically studied. The carbon fiber precursors were produced by electrospinning lignin/polyacrylonitrile solutions. CFs were obtained by pyrolyzing the precursors and CNTs were subsequently grown on the CFs to eventually achieve a CF-CNT hybrid structure. The processes of pyrolysis and CNT growth were conducted in a tube furnace using different conditions and the properties of the resultant products were studied and compared. The CF-CNT hybrid structure produced at 850 °C using a palladium catalyst showed the highest thermal stability, i.e., 98.3% residual weight at 950 °C. A mechanism for such superior thermal stability was postulated based on the results from X-ray diffraction, Raman spectroscopy, scanning and transmission electron microscopy, and electron energy loss spectroscopy analyses. The dense CNT decoration was found to increase the hydrophobicity of the CFs.

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Xu, X., Zhou, J., Jiang, L., Lubineau, G., Payne, S. A., & Gutschmidt, D. (2014). Lignin-based carbon fibers: Carbon nanotube decoration and superior thermal stability. Carbon, 80(1), 91–102. https://doi.org/10.1016/j.carbon.2014.08.042

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