Chemoenzymatic cascade reactions towards aliphatic nitriles and amines starting from biorenewable resources

Hinzmann A (2020)
Bielefeld: Universität Bielefeld.

Bielefelder E-Dissertation | Englisch
 
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2020
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Hinzmann A. Chemoenzymatic cascade reactions towards aliphatic nitriles and amines starting from biorenewable resources. Bielefeld: Universität Bielefeld; 2020.
Hinzmann, A. (2020). Chemoenzymatic cascade reactions towards aliphatic nitriles and amines starting from biorenewable resources. Bielefeld: Universität Bielefeld. doi:10.4119/unibi/2948708
Hinzmann, Alessa. 2020. Chemoenzymatic cascade reactions towards aliphatic nitriles and amines starting from biorenewable resources. Bielefeld: Universität Bielefeld.
Hinzmann, A. (2020). Chemoenzymatic cascade reactions towards aliphatic nitriles and amines starting from biorenewable resources. Bielefeld: Universität Bielefeld.
Hinzmann, A., 2020. Chemoenzymatic cascade reactions towards aliphatic nitriles and amines starting from biorenewable resources, Bielefeld: Universität Bielefeld.
A. Hinzmann, Chemoenzymatic cascade reactions towards aliphatic nitriles and amines starting from biorenewable resources, Bielefeld: Universität Bielefeld, 2020.
Hinzmann, A.: Chemoenzymatic cascade reactions towards aliphatic nitriles and amines starting from biorenewable resources. Universität Bielefeld, Bielefeld (2020).
Hinzmann, Alessa. Chemoenzymatic cascade reactions towards aliphatic nitriles and amines starting from biorenewable resources. Bielefeld: Universität Bielefeld, 2020.
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Material in PUB:
Dissertation, die diesen PUB Eintrag enthält
Enzymatic Synthesis of Aliphatic Nitriles at a Substrate Loading of up to 1.4 kg/L: A Biocatalytic Record Achieved with a Heme Protein
Hinzmann A, Glinski S, Worm M, Gröger H (2019)
The Journal of Organic Chemistry 84(8): 4867-4872.
Dissertation, die diesen PUB Eintrag enthält
Biocatalytic Synthesis of n-Octanenitrile Using an Aldoxime Dehydratase from Bacillus sp. OxB-1
Hinzmann A, Gröger H (2020)
In: Applied Biocatalysis. The Chemist's Enzyme Toolbox. Whittall J, Sutton PW (Eds); Hoboken, NJ: Wiley .
Dissertation, die diesen PUB Eintrag enthält
Approaching Bulk Chemical Nitriles from Alkenes: A Hydrogen Cyanide-Free Approach through a Combination of Hydroformylation and Biocatalysis
Plass C, Hinzmann A, Terhors M, Brauer W, Oike K, Yavuzer H, Asano Y, Vorholt AJ, Berke T, Gröger H (2019)
ACS CATALYSIS 9(6): 5198-5203.
Dissertation, die diesen PUB Eintrag enthält
Biotransformations in pure organic medium: organic solvent-labile enzymes in batch and flow exemplified for nitrile synthesis
Hinzmann A, Adebar N, Betke T, Leppin M, Gröger H (2019)
European Journal of Organic Chemistry 2019(41): 6911-6916.
Dissertation, die diesen PUB Eintrag enthält
Selective Hydrogenation of Fatty Nitriles to Primary Fatty Amines: Catalyst Evaluation and Optimization Starting from Octanenitrile
Hinzmann A, Gröger H (2020)
European Journal of Lipid Science and Technology 122(1): 1900163.
Dissertation, die diesen PUB Eintrag enthält
Synthetic Processes toward Nitriles without the Use of Cyanide: A Biocatalytic Concept Based on Dehydration of Aldoximes in Water
Hinzmann A, Betke T, Asano Y, Gröger H (2021)
Chemistry – A European Journal 27(17): 5313-5321.
Dissertation, die diesen PUB Eintrag enthält
Selective TEMPO-oxidation of alcohols to aldehydes in alternative organic solvents
Hinzmann A, Stricker M, Busch J, Glinski S, Oike K, Gröger H (2020)
European Journal of Organic Chemistry (16): 2399-2408.
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