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ChemInform Abstract: Oxygen Atom Transfer in the Oxidation of Triphenylphosphine by Molecular Oxygen Catalyzed by an Ru(III)‐ EDTA ‐ PPh3 Complex.

M.M.Taqui Khán, Mohammed Rafiq H. Siddiqui, Amjad Hussain, M. A. Moiz

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Abstract

Abstract The oxidation of PPh3 to O = PPh3 in the presence of a Ru(III) ‐ EDTA complex, and molecular oxygen in dioxane/water proceeds through the formation of the intermediate complexes (I), (II) and the dimeric p‐peroxo compound (III).

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What this paper is about

Abstract The oxidation of PPh3 to O = PPh3 in the presence of a Ru(III) ‐ EDTA complex, and molecular oxygen in dioxane/water proceeds through the formation of the intermediate complexes (I), (II) and the dimeric p‐peroxo compound (III).

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Available abstract

Abstract The oxidation of PPh3 to O = PPh3 in the presence of a Ru(III) ‐ EDTA complex, and molecular oxygen in dioxane/water proceeds through the formation of the intermediate complexes (I), (II) and the dimeric p‐peroxo compound (III).

Key concepts: Triphenylphosphine, Molecular oxygen, Oxygen atom, Chemistry, Oxygen, Catalysis, Medicinal chemistry, Atom (system on chip)

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ChemInform Abstract: Oxygen Atom Transfer in the Oxidation of Triphenylphosphine by Molecular Oxygen Catalyzed by an Ru(III)‐ EDTA ‐ PPh3 Complex. — Research Paper | ScholarLens