The tetrahedral triphenylsiloxy complex MoO2(OSiPh3)2 (1) and its Lewis baseadduct with 2,2\u27-bipyridine, MoO2(OSiPh3)2(bpy) (2), were prepared and characterised byIR/Raman spectroscopy, and thermogravimetric analysis. Both compounds catalyse theepoxidation of cis-cyclooctene at 55 oC using tert-butylhydroperoxide (t-BuOOH) isdecane as the oxidant, giving 1,2-epoxycyclooctane as the only product. The best resultswere obtained in the absence of a co-solvent (other than the decane) or in the presence of1,2-dichloroethane, while much lower activities were obtained when hexane oracetonitrile were added. With no co-solvent, catalyst 1 (initial activity 272 mol·molMo-1·h-1for a catalyst:substrate: oxidant molar ratio of 1:100:150) is much more ...
Low-cost metallate salts Na2MO4·2H2O (M = molybdenum, tungsten) react with a tridentate amine bisphe...
The dioxo tungsten(VI) and molybdenum(VI) complexes WCl2(O) 2(OPMePh2)2, WCl2(O) 2dppmO2, and MoCl2(...
Five salicylamides [R1R2SaAmH; R1, R2 = N-substituents: nBu, H (1a); tBu, H (1b); nOc, H (1c); Bn, H...
The tetrahedral triphenylsiloxy complex MoO2(OSiPh3)2 (1) and its Lewis baseadduct with 2,2'-bipyrid...
Abstract: The tetrahedral triphenylsiloxy complex MoO2(OSiPh3)2 (1) and its Lewis base adduct with 2...
The oxidative decarbonylation of the η3-allyl dicarbonyl complexes [Mo(η3-C3H5)Cl(CO)2(L)] (L = 2,2′...
Treatment of the solvent adduct [MoO2Cl2(THF)(2)] with the ligand 2-(1-pentyl-3-pyrazolyl)pyridine (...
Active solid oxidation catalysts can be obtained by incorporating dioxomolybdenum(VI) species derive...
The dioxomolybdenum(VI) complex [MoO2Cl2{p-tolyl(CH3DAB)}] has been prepared in good yield by reacti...
Bis(pyrazolyl)methanetetracarbonyl-molybdenum(0), cis-[Mo(CO)4(BPM)] (1), was prepared from Mo(CO)6 ...
[Mo(eta(3)-C(3)H(5))X(CO)(2)(NCCH(3))(2)] (X = Br, 1a; X = Cl, 1b) complexes reacted with the bident...
International audienceDinuclear and mononuclear molybdenum(VI) complexes with aroylhydrazonato ligan...
The catalytic performance of the complexes [MoO2Cl2(L)2][L = N,N-dimethylformamide (dmf), N,N-dimeth...
none8siThe polymeric catalyst [MoO3(2,2'-bipy)](n) has been employed in the oxidation of secondary a...
<div><p>The oxomolybdenum(VI) complex [MoOCl(L)] with a tetradentate glycine bisphenol ligand (H<sub...
Low-cost metallate salts Na2MO4·2H2O (M = molybdenum, tungsten) react with a tridentate amine bisphe...
The dioxo tungsten(VI) and molybdenum(VI) complexes WCl2(O) 2(OPMePh2)2, WCl2(O) 2dppmO2, and MoCl2(...
Five salicylamides [R1R2SaAmH; R1, R2 = N-substituents: nBu, H (1a); tBu, H (1b); nOc, H (1c); Bn, H...
The tetrahedral triphenylsiloxy complex MoO2(OSiPh3)2 (1) and its Lewis baseadduct with 2,2'-bipyrid...
Abstract: The tetrahedral triphenylsiloxy complex MoO2(OSiPh3)2 (1) and its Lewis base adduct with 2...
The oxidative decarbonylation of the η3-allyl dicarbonyl complexes [Mo(η3-C3H5)Cl(CO)2(L)] (L = 2,2′...
Treatment of the solvent adduct [MoO2Cl2(THF)(2)] with the ligand 2-(1-pentyl-3-pyrazolyl)pyridine (...
Active solid oxidation catalysts can be obtained by incorporating dioxomolybdenum(VI) species derive...
The dioxomolybdenum(VI) complex [MoO2Cl2{p-tolyl(CH3DAB)}] has been prepared in good yield by reacti...
Bis(pyrazolyl)methanetetracarbonyl-molybdenum(0), cis-[Mo(CO)4(BPM)] (1), was prepared from Mo(CO)6 ...
[Mo(eta(3)-C(3)H(5))X(CO)(2)(NCCH(3))(2)] (X = Br, 1a; X = Cl, 1b) complexes reacted with the bident...
International audienceDinuclear and mononuclear molybdenum(VI) complexes with aroylhydrazonato ligan...
The catalytic performance of the complexes [MoO2Cl2(L)2][L = N,N-dimethylformamide (dmf), N,N-dimeth...
none8siThe polymeric catalyst [MoO3(2,2'-bipy)](n) has been employed in the oxidation of secondary a...
<div><p>The oxomolybdenum(VI) complex [MoOCl(L)] with a tetradentate glycine bisphenol ligand (H<sub...
Low-cost metallate salts Na2MO4·2H2O (M = molybdenum, tungsten) react with a tridentate amine bisphe...
The dioxo tungsten(VI) and molybdenum(VI) complexes WCl2(O) 2(OPMePh2)2, WCl2(O) 2dppmO2, and MoCl2(...
Five salicylamides [R1R2SaAmH; R1, R2 = N-substituents: nBu, H (1a); tBu, H (1b); nOc, H (1c); Bn, H...