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      Activating Thiolate-Based Imidoalkylidene Tungsten(VI) Metathesis Catalysts by Grafting onto Silica

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      Asian Journal of Organic Chemistry
      Wiley-Blackwell

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          The remarkable metal-catalysed olefin metathesis reaction.

          Catalytic olefin metathesis--through which pairs of C = C bonds are reorganized--transforms simple molecules to those that are complex and precious. This class of reactions has noticeably enriched chemical synthesis, which is the art of preparing scarce molecules with highly desirable properties (for example, medicinal agents or polymeric materials). Research in the past two decades has yielded structurally well-defined catalysts for olefin metathesis that are used to synthesize an array of molecules with unprecedented efficiency. Nonetheless, the full potential of olefin metathesis will be realized only when additional catalysts are discovered that are truly practical and afford exceptional selectivity for a significantly broader range of reactions.
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            Olefin-Metathesis Catalysts for the Preparation of Molecules and Materials (Nobel Lecture)

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              Highly efficient molybdenum-based catalysts for enantioselective alkene metathesis.

              Discovery of efficient catalysts is one of the most compelling objectives of modern chemistry. Chiral catalysts are in particularly high demand, as they facilitate synthesis of enantiomerically enriched small molecules that are critical to developments in medicine, biology and materials science. Especially noteworthy are catalysts that promote-with otherwise inaccessible efficiency and selectivity levels-reactions demonstrated to be of great utility in chemical synthesis. Here we report a class of chiral catalysts that initiate alkene metathesis with very high efficiency and enantioselectivity. Such attributes arise from structural fluxionality of the chiral catalysts and the central role that enhanced electronic factors have in the catalytic cycle. The new catalysts have a stereogenic metal centre and carry only monodentate ligands; the molybdenum-based complexes are prepared stereoselectively by a ligand exchange process involving an enantiomerically pure aryloxide, a class of ligands scarcely used in enantioselective catalysis. We demonstrate the application of the new catalysts in an enantioselective synthesis of the Aspidosperma alkaloid, quebrachamine, through an alkene metathesis reaction that cannot be promoted by any of the previously reported chiral catalysts.
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                Author and article information

                Journal
                Asian Journal of Organic Chemistry
                Asian J. Org. Chem.
                Wiley-Blackwell
                21935807
                June 2015
                June 13 2015
                : 4
                : 6
                : 528-532
                Article
                10.1002/ajoc.201500038
                54494883-1ce3-42d3-b88a-01beb11be6a1
                © 2015

                http://doi.wiley.com/10.1002/tdm_license_1.1

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