Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis

Klaus C (2023)
Bielefeld: Universität Bielefeld.

Bielefelder E-Dissertation | Englisch
 
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2023
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180
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https://pub.uni-bielefeld.de/record/2983363

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Klaus C. Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis. Bielefeld: Universität Bielefeld; 2023.
Klaus, C. (2023). Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis. Bielefeld: Universität Bielefeld.
Klaus, Cindy. 2023. Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis. Bielefeld: Universität Bielefeld.
Klaus, C. (2023). Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis. Bielefeld: Universität Bielefeld.
Klaus, C., 2023. Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis, Bielefeld: Universität Bielefeld.
C. Klaus, Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis, Bielefeld: Universität Bielefeld, 2023.
Klaus, C.: Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis. Universität Bielefeld, Bielefeld (2023).
Klaus, Cindy. Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis. Bielefeld: Universität Bielefeld, 2023.
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2023-10-04T10:36:35Z
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