Literature DB >> 25675271

Vanadyl cationic complexes as catalysts in olefin oxidation.

Carla D Nunes1, Pedro D Vaz, Vítor Félix, Luis F Veiros, Tânia Moniz, Maria Rangel, Sara Realista, Ana C Mourato, Maria José Calhorda.   

Abstract

Three new mononuclear oxovanadium(IV) complexes [VO(acac)(R-BIAN)]Cl (BIAN = 1,2-bis{(R-phenyl)imino}acenaphthene, R = H, 1; CH3, 2; Cl, 3) were prepared and characterized. They promoted the catalytic oxidation of olefins such as cyclohexene, cis-cyclooctene, and styrene with both tbhp (tert-butylhydroperoxide) and H2O2, and of enantiopure olefins (S(-)- and R(+)-pinene, and S(-)- and R(+)-limonene) selectively to their epoxides, with tbhp as the oxidant. The TOFs for styrene epoxidation promoted by complex 3 with H2O2 (290 mol mol(-1)V h(-1)) and for cis-cyclooctene epoxidation by 2 with tbhp (248 mol mol(-1)V h(-1)) are particularly good. Conversions reached 90% for several systems with tbhp, and were lower with H2O2. A preference for the internal C=C bond, rather than the terminal one, was found for limonene. Kinetic data indicate an associative process as the first step of the reaction and complex [VO(acac)(H-BIAN)](+) (1(+)) was isolated in an FTICR cell after adding tbhp to 1. EPR studies provide evidence for the presence of a V(IV) species in solution, until at least 48 hours after the addition of tbhp and cis-cyclooctene, and cyclic voltammetry studies revealed an oxidation potential above 1 V for complex 1. DFT calculations suggest that a [VO(H-BIAN)(MeOO)](+) complex is the likely active V(IV) species in the catalytic cycle from which two competitive mechanisms for the reaction proceed, an outer sphere path with an external attack of the olefin at the coordinated peroxide, and an inner sphere mechanism starting with a complex with the olefin coordinated to vanadium.

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Year:  2015        PMID: 25675271     DOI: 10.1039/c4dt03174a

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  4 in total

Review 1.  Redox-active BIAN-based Diimine Ligands in Metal-Catalyzed Small Molecule Syntheses.

Authors:  Josef Bernauer; Jennifer Pölker; Axel Jacobi von Wangelin
Journal:  ChemCatChem       Date:  2021-10-22       Impact factor: 5.497

2.  Instant and quantitative epoxidation of styrene under ambient conditions over a nickel(ii)dibenzotetramethyltetraaza[14]annulene complex immobilized on amino-functionalized SBA-15.

Authors:  Mohamed Abboud; Nabil Al-Zaqri; Taher Sahlabji; Murad Eissa; Ahmed T Mubarak; Radhouane Bel-Hadj-Tahar; Ali Alsalme; Fahad A Alharthi; Amjad Alsyahi; Mohamed S Hamdy
Journal:  RSC Adv       Date:  2020-09-24       Impact factor: 4.036

3.  Redox activity of nickel and vanadium porphyrins: a possible mechanism behind petroleum genesis and maturation?

Authors:  G Munoz; B K Gunessee; D Bégué; B Bouyssiere; I Baraille; G Vallverdu; H Santos Silva
Journal:  RSC Adv       Date:  2019-03-26       Impact factor: 3.361

4.  Effect of the 2-R-Allyl and Chloride Ligands on the Cathodic Paths of [Mo(η3-2-R-allyl)(α-diimine)(CO)2Cl] (R = H, CH3; α-diimine = 6,6'-Dimethyl-2,2'-bipyridine, Bis(p-tolylimino)acenaphthene).

Authors:  James O Taylor; Ryan Culpeck; Ann M Chippindale; Maria José Calhorda; František Hartl
Journal:  Organometallics       Date:  2021-06-02       Impact factor: 3.876

  4 in total

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