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  • 1
    Publication Date: 2015-10-22
    Description: Three new ruthenium alkylidene complexes (PCy 3 )Cl 2 (H 2 ITap)Ru=CHSPh ( 9 ), (DMAP) 2 Cl 2 (H 2 ITap)Ru=CHPh ( 11 ) and (DMAP) 2 Cl 2 (H 2 ITap)Ru=CHSPh ( 12 ) have been synthesized bearing the pH-responsive H 2 ITap ligand (H 2 ITap = 1,3-bis(2’,6’-dimethyl-4’-dimethylaminophenyl)-4,5-dihydroimidazol-2-ylidene). Catalysts 11 and 12 are additionally ligated by two pH-responsive DMAP ligands. The crystal structure was solved for complex 12 by X-ray diffraction. In organic, neutral solution, the catalysts are capable of performing standard ring-opening metathesis polymerization (ROMP) and ring closing metathesis (RCM) reactions with standard substrates. The ROMP with complex 11 is accelerated in the presence of two equiv of H 3 PO 4 , but is reduced as soon as the acid amount increased. The metathesis of phenylthiomethylidene catalysts 9 and 12 is sluggish at room temperature, but their ROMP can be dramatically accelerated at 60 °C. Complexes 11 and 12 are soluble in aqueous acid. They display the ability to perform RCM of diallylmalonic acid (DAMA), however, their conversions are very low amounting only to few turnovers before decomposition. However, both catalysts exhibit outstanding performance in the ROMP of dicyclopentadiene (DCPD) and mixtures of DCPD with cyclooctene (COE) in acidic aqueous microemulsion. With loadings as low as 180 ppm, the catalysts afforded mostly quantitative conversions of these monomers while maintaining the size and shape of the droplets throughout the polymerization process. Furthermore, the coagulate content for all experiments stayed 〈2%. This represents an unprecedented efficiency in emulsion ROMP based on hydrophilic ruthenium alkylidene complexes. Beilstein J. Org. Chem. 2015, 11, 1960–1972. doi:10.3762/bjoc.11.212
    Keywords: activationaqueous catalysisemulsionolefin metathesispolymerizationruthenium
    Electronic ISSN: 1860-5397
    Topics: Chemistry and Pharmacology
    Published by Beilstein-Institut
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