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Zhou, Jianle (author), Hollmann, F. (author), He, Qi (author), Chen, Wen (author), Ma, Yunjian (author), Wang, Yonghua (author)
The realm of photobiocatalytic alkane biofuel synthesis has burgeoned recently; however, the current dearth of well-established and scalable production methodologies in this domain remains conspicuous. In this investigation, we engineered a modified form of membrane-associated fatty acid photodecarboxylase sourced from Micractinium conductrix...
journal article 2023
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Wang, Xu Ping (author), Zhou, Peng Fei (author), Li, Zhi Gang (author), Yang, Bo (author), Hollmann, F. (author), Wang, Yong Hua (author)
A Ser105Ala mutant of the lipase B from Candida antarctica enables 'perhydrolase-only' reactions. At the example of the chemoenzymatic Baeyer-Villiger oxidation of cyclohexanone, we demonstrate that with this mutant selective oxidation can be achieved in deep eutectic solvent while essentially eliminating the undesired hydrolysis reaction of...
journal article 2017
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Zhou, Pengfei (author), Wang, Xuping (author), Zeng, Chaoxi (author), Wang, Weifei (author), Yang, Bo (author), Hollmann, F. (author), Wang, Yonghua (author)
A chemoenzymatic method for the production of epoxidized vegetable oils was developed. The unique combination of the commercial lipase G from Penicillieum camembertii with certain deep eutectic solvents enabled the efficient production of epoxidized vegetable oils.
journal article 2017
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Zhou, Pengfei (author), Wang, Xuping (author), Yang, Bo (author), Hollmann, F. (author), Wang, Yonghua (author)
Epoxides are important synthetic intermediates for the synthesis of a broad range of industrial products. This study presents a promising solution to the current limitation of enzyme instability. By using simple deep eutectic solvents such as choline chloride/sorbitol, significant stabilization of the biocatalyst has been achieved leading to...
journal article 2017
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Lan, Dongming (author), Wang, Xuping (author), Zhou, Pengfei (author), Hollmann, F. (author), Wang, Yonghua (author)
Deep eutectic solvents act as surfactants in biphasic (hydrophobic/aqueous) reaction mixtures enabling higher interfacial surface areas at lower mechanical stress as compared to simple emulsions. Exploiting this effect the rate of a chemoenzymatic epoxidation reaction was increased more than six-fold.
journal article 2017
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