Heterogeneous oxidation of pyrimidine and alkyl thioethers in ionic liquids over mesoporous Ti or Ti/Ge catalysts


Autoria(s): Cimpeanu, V.; Parvulescu, V.I.; Amoros, P; Beltran, D; Thompson, JM; Hardacre, C
Data(s)

20/09/2004

Resumo

<p>Heterogeneous catalytic oxidation of a series of thioethers (2-thiomethylpyrimidine, 2-thiomethyl-4,6-dimethyl-pyrimidine, 2-thiobenzylpyrimidine, 2-thiobenzyl-4,6-dimethylpyrimidine, thioanisole, and n-heptyl methyl sulfide) was performed in ionic liquids by using MCM-41 and UVM-type mesoporous catalysts containing Ti, or Ti and Ge. A range of triflate, tetrafluoroborate, trifluoroacetate, lactate and bis(trifluoromethanesulfonyl)imide-based ionic liquids were used. The oxidations were carried out by using anhydrous hydrogen peroxide or the urea-hydrogen peroxide adduct and showed that ionic liquids are very effective solvents, achieving greater reactivity and selectivity than reactions performed in dioxane. The effects of halide and acid impurities on the reactions were also investigated. Recycling experiments on catalysts were carried out in order to evaluate Ti leaching and its effect on activity and selectivity.</p>

Identificador

http://pure.qub.ac.uk/portal/en/publications/heterogeneous-oxidation-of-pyrimidine-and-alkyl-thioethers-in-ionic-liquids-over-mesoporous-ti-or-tige-catalysts(4f2d4120-af77-4e87-bc8e-cf818dff0763).html

http://dx.doi.org/10.1002/chem.200400105

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Cimpeanu , V , Parvulescu , V I , Amoros , P , Beltran , D , Thompson , J M & Hardacre , C 2004 , ' Heterogeneous oxidation of pyrimidine and alkyl thioethers in ionic liquids over mesoporous Ti or Ti/Ge catalysts ' Chemistry - A European Journal , vol 10 , no. 18 , pp. 4640-4646 . DOI: 10.1002/chem.200400105

Palavras-Chave #heterogeneous catalysis #SOLVENTS #thioether #SULFOXIDATION #HALIDE #CONTAINING ZEOLITES #2-THIOBENZYL-4,6-DIMETHYL-PYRIMIDINE #HYDROGEN-PEROXIDE #WATER #sulfoxidation #OXIDES #ionic liquids #TITANIUM SILICALITE #mesoporous materials #COMPLEXES
Tipo

article