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Synthesis, characterization, and oxygen atom transfer reactions of (HB(Me sub 2 C sub 3 N sub 2 H) sub 3 )MoO(S sub 2 P(OR) sub 2 ) and (HB(Me sub 2 C sub 3 N sub 2 H) sub 3 )MoO sub 2 (. eta. sup 1 -S sub 2 P(OEt) sub 2 )

Journal Article · · Inorganic Chemistry; (USA)
DOI:https://doi.org/10.1021/ic00290a029· OSTI ID:5522574
The compounds (HB(Me{sub 2}pz){sub 3})MoO(S{sub 2}P(OEt){sub 2}) (1a) and (HB(Me{sub 2}pz){sub 3})MoO{sub 2}(S{sub 2}P(OEt){sub 2}(2)) containing bidentate and monodentate S{sub 2}P (OEt){sub 2}-ligands, respectively, have been prepared by the reaction of Mo{sub 2}O{sub 3}(S{sub 2}P(OEt){sub 2}){sub 4} with K(HB(Me{sub 2}pz){sub 3}). (HB(Me{sub 2}pz){sub 3})MoO(S{sub 2}P(OEt){sub 2}) and its analog (HB(Me{sub 2}pz){sub 3})MoO(S{sub 2}P(OMe){sub 2}) have also been prepared in higher yield by the reaction of MoO{sub 2}O{sub 3}(S{sub 2}(OEt){sub 2}){sub 4} with Ph{sub 3}P followed by the reaction with K(HB(Me{sub 2}pz){sub 3}). Both 1a and 2 have been structurally characterized by x-ray crystallography, and the crystallographic data are presented. The molecular structures were also determined. Compound 1a reduces Me{sub 2}SO to Me{sub 2}S. The kinetic data and activation parameters are presented for this reaction. Compound 2 oxidizes Ph{sub 3}P to Ph{sub 3}PO. Both complexes catalyze the oxidation of Ph{sub 3}P by Me{sub 2}SO. 34 references, 4 figures, 5 tables.
OSTI ID:
5522574
Journal Information:
Inorganic Chemistry; (USA), Journal Name: Inorganic Chemistry; (USA) Vol. 27:17; ISSN 0020-1669; ISSN INOCA
Country of Publication:
United States
Language:
English