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The Fabrication and Characterization of Carbon Aerogels by Gelation and Supercritical Drying in Isopropanol
Author(s) -
Fu R.,
Zheng B.,
Liu J.,
Dresselhaus M.S.,
Dresselhaus G.,
Satcher J.H.,
Baumann T.F.
Publication year - 2003
Publication title -
advanced functional materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.069
H-Index - 322
eISSN - 1616-3028
pISSN - 1616-301X
DOI - 10.1002/adfm.200304289
Subject(s) - aerogel , materials science , supercritical drying , carbonization , chemical engineering , carbon fibers , high resolution transmission electron microscopy , supercritical fluid , adsorption , specific surface area , catalysis , transmission electron microscopy , nanotechnology , composite material , organic chemistry , scanning electron microscope , chemistry , composite number , engineering
We report a new method for the fabrication of carbon aerogels. Resorcinol and furfural were polymerized in isopropanol using HCl as a catalyst and the resulting alcogels were then dried directly using supercritical isopropanol, followed by carbonization under a nitrogen atmosphere. The carbon aerogels can be prepared over a range of densities (0.148–0.746 g/cm 3 ), depending on the gelation temperature and the mass content of the reactants. The textural and transport properties of the aerogels materials were characterized by nitrogen adsorption/desorption analysis, high‐resolution transmission electron microscopy (HRTEM), magnetic susceptibility, and resistivity measurements. TEM observations show that the carbon aerogels are composed of interconnected nanoparticles with diameters ranging from 20 to 30 nm. All of the aerogel samples exhibit high Brunauer– Emmett–Teller (BET) surface areas in the range of 557–656 m 2 /g. The carbon aerogels produced by this new method have similar transport properties to those of carbon aerogels prepared by the traditional method.
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