Long-chain polyesters via chemical catalytic conversions of fatty acid esters
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2012
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SMITH, Patrick B., ed., Richard A. GROSS, ed.. Biobased Monomers, Polymers, and Materials. Washington, DC: American Chemical Society, 2012, pp. 151-164. ACS Symposium Series. 1105. ISBN 0-8412-2767-5. Available under: doi: 10.1021/bk-2012-1105.ch010
Zusammenfassung
Plant oils with their long linear methylene sequences are attractive substrates for polymeric materials, such as long-chain aliphatic polyesters and polyamides. Existing biotechnological routes for their conversion to long-chain linear a,ro-dicarboxylic acid derivatives have recently been complemented by chemical catalytic conversions. This contribution discusses and compares the conversion of unsaturated fatty acids by olefin metathesis and by isomerizing alkoxycarbonylation, and reviews properties of resulting long-chain aliphatic polyesters. The impact of multiple unsaturated fatty acids present in technical grade plant oils is adressed.
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STEMPFLE, Florian, Philipp ROESLE, Stefan MECKING, 2012. Long-chain polyesters via chemical catalytic conversions of fatty acid esters. In: SMITH, Patrick B., ed., Richard A. GROSS, ed.. Biobased Monomers, Polymers, and Materials. Washington, DC: American Chemical Society, 2012, pp. 151-164. ACS Symposium Series. 1105. ISBN 0-8412-2767-5. Available under: doi: 10.1021/bk-2012-1105.ch010BibTex
@inproceedings{Stempfle2012Longc-20828, year={2012}, doi={10.1021/bk-2012-1105.ch010}, title={Long-chain polyesters via chemical catalytic conversions of fatty acid esters}, number={1105}, isbn={0-8412-2767-5}, publisher={American Chemical Society}, address={Washington, DC}, series={ACS Symposium Series}, booktitle={Biobased Monomers, Polymers, and Materials}, pages={151--164}, editor={Smith, Patrick B. and Gross, Richard A.}, author={Stempfle, Florian and Roesle, Philipp and Mecking, Stefan} }
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