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Publications in Scientific Journals:

F. Liebner, E. Haimer, A Potthast, D. Loidl, S. Tschegg, M.-A. Néouze, M. Wendland, T. Rosenau:
"Cellulosic aerogels as ultra-lightweight materials. Part 2: Synthesis and properties";
Holzforschung, 63 (2009), 1; 3 - 11.



English abstract:
Ultra-lightweight cellulose aerogels can be obtained in three steps: (1) preparation of a cellulose solution in molten N-methylmorpholine-N-oxide monohydrate (NMMO.H2O) at 110-120°C and casting of the viscous mass into molds; (2) extaction of the solidified castings with ethanol to initiate cellulose aggregation and to remove NMMO.H2O so that the fragile, fine-porous texture of cellulose II is largely retained; and (3) drying of the lyogel using supercritical carbon dioxide (scCO2). According to this approach, cellulosic aerogels were prepared from eight commercial cellulosic materials and pulps and analyzed for selected chemical, physicochemical and mechanical parameters. The results reveal that all aerogels obtained from 3% cellulose containing. NMMO.H2O melts had a largely uniform mesoporous structure with an average pore size of approximatively 9-12 nm, surface area of 190-310 m2 g-1, and specific density of 0.046-0.069 g cm-3, but rather low mechanical stability expressed as compressive yield strain of 2.9-5.5%. All samples showed viscoelastic behavior, with Young's modulus ranging from approximatively 5 to 10 N mm-2. Doubling the cellulose content in the NMMO.H2O melt from 3% to 6% increased Young's modulus by one order of magnitude. Shrinkage of the fragile cellulose bodies during scCO2 drying was still considerable and is subject to further investigations. Influencing parameters such as scCO2 pressure, cellulose content, regenerating solvent and the number of regenerating baths were optimized.


"Official" electronic version of the publication (accessed through its Digital Object Identifier - DOI)
http://dx.doi.org/10.1515/HF.2009.002



Related Projects:
Project Head Marie-Alexandra Néouze:
Ionische Verknüpfung von Nanopartikeln


Created from the Publication Database of the Vienna University of Technology.