Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor

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Last updated 17 juin 2024
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Catalysts, Free Full-Text
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Selective Hydroxylation of C(sp3)−H Bonds in Steroids - Abas - 2023 - Chemistry – A European Journal - Wiley Online Library
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Catalysts, Free Full-Text
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Figure 3 from Manganese Catalyzed C-H Halogenation.
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Selective Hydroxylation of C(sp3)−H Bonds in Steroids - Abas - 2023 - Chemistry – A European Journal - Wiley Online Library
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Catalysts, Free Full-Text
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
ATP-dependent hydroxylation of an unactivated primary carbon with water
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Heteroatom-Heteroatom Bond Formation in Natural Product Biosynthesis. - Abstract - Europe PMC
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Enantioselective, intermolecular benzylic C–H amination catalysed by an engineered iron-haem enzyme
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
5.6: Monooxygenases - Chemistry LibreTexts
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Efficient and scalable synthesis of 1,5-diamino-2-hydroxy-pentane from l-lysine via cascade catalysis using engineered Escherichia coli, Microbial Cell Factories
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Efficient and scalable synthesis of 1,5-diamino-2-hydroxy-pentane from l-lysine via cascade catalysis using engineered Escherichia coli, Microbial Cell Factories
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Catalytic Mechanisms and Active Species of Benzene Hydroxylation Reaction System Based on Fe-Based Enzyme-Mimetic Structure
Enzymatic Hydroxylation of Aliphatic C–H Bonds by a Mn/Fe Cofactor
Enzymatic Synthesis of l-threo-β-Hydroxy-α-Amino Acids via Asymmetric Hydroxylation Using 2-Oxoglutarate-Dependent Hydroxylase from Sulfobacillus thermotolerans Strain Y0017

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