Carbon Aerogels and Xerogels
- 1 January 1992
- journal article
- Published by Springer Nature in MRS Proceedings
Abstract
The aqueous polycondensation of resorcinol with formaldehyde proceeds through a sol-gel transition and results in the formation of highly crosslinked, transparent gels. If the solvent is simply evaporated from the pores of these gels, large capillary forces are exerted and a collapsed structure known as a xerogel is formed. In order to preserve the gel skeleton and minimize shrinkage, the aforementioned solvent or its substitute must be removed under supercritical conditions. The microporous material that results from this operation is known as an aerogel. Because resorcinol-formaldehyde aerogels and xerogels consist of a highly crosslinked aromatic polymer, they can be pyrolyzed in an inert atmosphere to form vitreous carbon monoliths. The resultant porous materials are black in color and no longer transparent, yet they retain the ultrafine cell size (< 50 nm), high surface area (600-800 m2 /g), and the interconnected particle morphology of their organic precursors. The thermal, acoustic, mechanical, and electrical properties of carbon aerogels/xerogels primarily depend upon polymerization conditions and pyrolysis temperature. In this paper, the chemistry-structure-property relationships of these unique materials will be discussed in detail.Keywords
This publication has 17 references indexed in Scilit:
- Thermal Conductivity of Monolithic Organic AerogelsScience, 1992
- The transport properties of activated carbon fibersJournal of Materials Research, 1991
- Chemical Processing of CeramicsChemical & Engineering News, 1990
- Organic aerogels from the polycondensation of resorcinol with formaldehydeJournal of Materials Science, 1989
- Characterization of diamond films by Raman spectroscopyJournal of Materials Research, 1989
- AerogelsScientific American, 1988
- Low-density microcellular carbon foamsJournal of Materials Science, 1987
- Growth of Fractally Rough ColloidsPhysical Review Letters, 1986
- The mechanics of three-dimensional cellular materialsProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1982
- Inorganic oxide aerogelsAdvances in Colloid and Interface Science, 1976