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Frank Hollmann

Showing results (41-50 of 148) with videos related to

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Journal of the American Chemical Society|May 5, 2005
Direct electrochemical regeneration of monooxygenase subunits for biocatalytic asymmetric epoxidationFrank Hollmann, Karin Hofstetter, Tilo Habicher, et al.
Applied Microbiology and Biotechnology|February 14, 2012
Immobilized redox mediators for electrochemical NAD(P)+ regenerationSvenja Kochius, Anders O Magnusson, Frank Hollmann, et al.
Chembiochem : a European Journal of Chemical Biology|February 22, 2008
Light-driven biocatalytic oxidation and reduction reactions: scope and limitationsAndreas Taglieber, Frank Schulz, Frank Hollmann, et al.
Chemsuschem|July 21, 2021
Valorization of Small Alkanes by Biocatalytic OxyfunctionalizationDurga Mahor, Zhiqi Cong, Martin J Weissenborn, et al.
Engineering in Life Sciences|July 7, 2020
Towards electroenzymatic processes involving old yellow enzymes and mediated cofactor regenerationAndreas Tosstorff, Cora Kroner, Diederik J Opperman, et al.
Trends in Biotechnology|January 16, 2021
Production of Bio-alkanes from Biomass and CO<sub>2</sub>Richen Lin, Chen Deng, Wuyuan Zhang, et al.
Chemcatchem|December 5, 2017
Selective Photooxidation Reactions using Water-Soluble Anthraquinone PhotocatalystsWuyuan Zhang, Jenő Gacs, Isabel W C E Arends, et al.
Applied Microbiology and Biotechnology|December 24, 2013
Recent trends and novel concepts in cofactor-dependent biotransformationsSelin Kara, Joerg H Schrittwieser, Frank Hollmann, et al.
Biochimie|October 13, 2009
Increasing the synthesis/hydrolysis ratio of aminoacylase 1 by site-directed mutagenesisRainer Wardenga, Holger A Lindner, Frank Hollmann, et al.
Applied Microbiology and Biotechnology|August 16, 2008
TADH, the thermostable alcohol dehydrogenase from Thermus sp. ATN1: a versatile new biocatalyst for organic synthesisVolker Höllrigl, Frank Hollmann, Andreas C Kleeb, et al.
Pageof 15

Showing results (41-50 of 148) with videos related to

Sort By:
Pageof 15
Journal of the American Chemical Society|May 5, 2005
Direct electrochemical regeneration of monooxygenase subunits for biocatalytic asymmetric epoxidationFrank Hollmann, Karin Hofstetter, Tilo Habicher, et al.
Applied Microbiology and Biotechnology|February 14, 2012
Immobilized redox mediators for electrochemical NAD(P)+ regenerationSvenja Kochius, Anders O Magnusson, Frank Hollmann, et al.
Chembiochem : a European Journal of Chemical Biology|February 22, 2008
Light-driven biocatalytic oxidation and reduction reactions: scope and limitationsAndreas Taglieber, Frank Schulz, Frank Hollmann, et al.
Chemsuschem|July 21, 2021
Valorization of Small Alkanes by Biocatalytic OxyfunctionalizationDurga Mahor, Zhiqi Cong, Martin J Weissenborn, et al.
Engineering in Life Sciences|July 7, 2020
Towards electroenzymatic processes involving old yellow enzymes and mediated cofactor regenerationAndreas Tosstorff, Cora Kroner, Diederik J Opperman, et al.
Trends in Biotechnology|January 16, 2021
Production of Bio-alkanes from Biomass and CO<sub>2</sub>Richen Lin, Chen Deng, Wuyuan Zhang, et al.
Chemcatchem|December 5, 2017
Selective Photooxidation Reactions using Water-Soluble Anthraquinone PhotocatalystsWuyuan Zhang, Jenő Gacs, Isabel W C E Arends, et al.
Applied Microbiology and Biotechnology|December 24, 2013
Recent trends and novel concepts in cofactor-dependent biotransformationsSelin Kara, Joerg H Schrittwieser, Frank Hollmann, et al.
Biochimie|October 13, 2009
Increasing the synthesis/hydrolysis ratio of aminoacylase 1 by site-directed mutagenesisRainer Wardenga, Holger A Lindner, Frank Hollmann, et al.
Applied Microbiology and Biotechnology|August 16, 2008
TADH, the thermostable alcohol dehydrogenase from Thermus sp. ATN1: a versatile new biocatalyst for organic synthesisVolker Höllrigl, Frank Hollmann, Andreas C Kleeb, et al.
Pageof 15