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Effects of Substituent and Temperature on Enantioselectivity for Lipase-Catalyzed Esterification of 2-(4-Substituted Phenoxy) Propionic Acids in Organic Solvents

โœ Scribed by Keiichi Watanabe; Takashi Koshiba; Yoshitaka Yasufuku; Toshifumi Miyazawa; Shin-ichi Ueji


Publisher
Elsevier Science
Year
2001
Tongue
English
Weight
80 KB
Volume
29
Category
Article
ISSN
0045-2068

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โœฆ Synopsis


Substituent effects on the enantioselectivity for the lipase-catalyzed esterifications in organic solvents were studied by use of 2-(4-substituted phenoxy)propionic acids as the substrates with various substituents of H, F, Cl, CF 3 , CH 3 , CH 3 CH 2 , and CH 3 O. The distinction in the behavior of their enantioselectivity was primarily responsible for the size effects of the substituents, although the substituents are far away from the stereocenter of the substrates. For the similar substituents in size, CH 3 and CF 3 , however, their electronic effects played an important role in controlling the enantioselectivity. This variation of the enantioselectivity due to the electronic effects is also supported by the discussion based on the value of the Michaelis constant (K m ) obtained. In addition, by raising the reaction temperature with enough water added to isopropyl ether as the reaction medium, the enantioselectivity is found to be dramatically enhanced for the substrate bearing CH 3 O group due to the strong electron-donating effect.


๐Ÿ“œ SIMILAR VOLUMES


High Temperature-Induced High Enantiosel
โœ Yoshitaka Yasufuku; Shin-ichi Ueji ๐Ÿ“‚ Article ๐Ÿ“… 1997 ๐Ÿ› Elsevier Science ๐ŸŒ English โš– 211 KB

The improved enantioselectivities were observed for lipase MY-catalyzed esterifications of 2-phenoxypropionic acids in organic solvent at high reaction temperature. In this paper, we proposed an assumed model for explaining its high temperature-induced high enantioselectivity.