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      Kontaktionenpaar‐gesteuerte Lewis‐Säurekatalyse zur asymmetrischen Synthese vontrans‐konfigurierten β‐Lactonen

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      Angewandte Chemie
      Wiley

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          A powerful chiral counterion strategy for asymmetric transition metal catalysis.

          Traditionally, transition metal-catalyzed enantioselective transformations rely on chiral ligands tightly bound to the metal to induce asymmetric product distributions. Here we report high enantioselectivities conferred by a chiral counterion in a metal-catalyzed reaction. Two different transformations catalyzed by cationic gold(I) complexes generated products in 90 to 99% enantiomeric excess with the use of chiral binaphthol-derived phosphate anions. Furthermore, we show that the chiral counterion can be combined additively with chiral ligands to enable an asymmetric transformation that cannot be achieved by either method alone. This concept of relaying chiral information via an ion pair should be applicable to a vast number of metal-mediated processes.
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            Recent advances in asymmetric phase-transfer catalysis.

            The use of chiral nonracemic onium salts and crown ethers as effective phase-transfer catalysts have been studied intensively primarily for enantioselective carbon-carbon or carbon-heteroatom bond-forming reactions under mild biphasic conditions. An essential issue for optimal asymmetric catalysis is the rational design of catalysts for targeted reaction, which allows generation of a well-defined chiral ion pair that reacts with electrophiles in a highly efficient and stereoselective manner. This concept, together with the synthetic versatility of phase-transfer catalysis, provides a reliable and general strategy for the practical asymmetric synthesis of highly valuable organic compounds.
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              Recent development and application of chiral phase-transfer catalysts.

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                Author and article information

                Journal
                ANGE
                Angewandte Chemie
                Angew. Chem.
                Wiley
                00448249
                15213757
                July 07 2008
                July 07 2008
                : 120
                : 29
                : 5541-5544
                Article
                10.1002/ange.200801143
                9a90aaa7-fe7e-444e-b849-5e213ae22cde
                © 2008

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

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