C-H oxidation by hydroxo manganese(v) porphyrins: a DFT study

scientific article published on 17 February 2009

C-H oxidation by hydroxo manganese(v) porphyrins: a DFT study is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1039/B821029B
P698PubMed publication ID19294291

P50authorOdile EisensteinQ23888363
David BalcellsQ45310232
Christophe RaynaudQ57605297
P2093author name stringRobert H Crabtree
P433issue13
P407language of work or nameEnglishQ1860
P304page(s)1772-1774
P577publication date2009-02-17
P1433published inChemical CommunicationsQ426303
P1476titleC-H oxidation by hydroxo manganese(v) porphyrins: a DFT study

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cites work (P2860)
Q40935689A mechanistic investigation of the ruthenium porphyrin catalysed aziridination of olefins by aryl azides
Q46291020Biomimetic Reactivity of Oxygen-Derived Manganese and Iron Porphyrinoid Complexes
Q37094582Gas-phase reactions of cationic vanadium-phosphorus oxide clusters with C2H(x) (x=4, 6): a DFT-based analysis of reactivity patterns.
Q38008280Hydrogen-abstraction reactivity patterns from A to Y: the valence bond way.
Q43265803Hydrogen-atom abstraction reactions by manganese(V)- and manganese(IV)-oxo porphyrin complexes in aqueous solution
Q33992789Manganese catalysts for C-H activation: an experimental/theoretical study identifies the stereoelectronic factor that controls the switch between hydroxylation and desaturation pathways
Q42712560Molecular recognition in Mn-catalyzed C-H oxidation. Reaction mechanism and origin of selectivity from a DFT perspective
Q47245449Oxygen Activation and Radical Transformations in Heme Proteins and Metalloporphyrins
Q37851029Selective functionalisation of saturated C-H bonds with metalloporphyrin catalysts

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