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- W2941677718 abstract "A manganese-catalyzed oxidation of organosilanes with H2O2 is described by J. L. Xiao, C. Q. Li et al. in their Communication on page 6380 ff. Silanols can be obtained by oxidation of hydrosilanes with various oxidants under noble-metal catalysis. However, the methods developed to date generally suffer from the formation of byproducts. A manganese catalyst with an electron-rich ligand was now employed in a simple, benign, and efficient process for the oxidation of various hydrosilanes and dihydrosilanes to silanols and silanediols without waste byproduct generation. A manganese-catalyzed oxidation of organosilanes with H2O2 is described by J. L. Xiao, C. Q. Li et al. in their Communication on page 6380 ff. Silanols can be obtained by oxidation of hydrosilanes with various oxidants under noble-metal catalysis. However, the methods developed to date generally suffer from the formation of byproducts. A manganese catalyst with an electron-rich ligand was now employed in a simple, benign, and efficient process for the oxidation of various hydrosilanes and dihydrosilanes to silanols and silanediols without waste byproduct generation. Lithium-Metal Batteries Zeolite Catalysts Solid-State Reactions" @default.
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- W2941677718 date "2019-03-18" @default.
- W2941677718 modified "2023-10-16" @default.
- W2941677718 title "Cover Picture: Selective Manganese‐Catalyzed Oxidation of Hydrosilanes to Silanols under Neutral Reaction Conditions (Angew. Chem. Int. Ed. 19/2019)" @default.
- W2941677718 doi "https://doi.org/10.1002/anie.201903074" @default.
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