Bidentate hydroxyalkyl NHC ligands for the copper-catalyzed asymmetric allylic substitution of allyl phosphates with Grignard reagents.
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Y. L. Le Guen | M. Mauduit | Olivier Baslé | Marc Mauduit | Magaly Magrez | Yann Le Guen | Christophe Crévisy | C. Crévisy | O. Baslé | Magaly Magrez | Yann Le Guen
[1] B. Li,et al. Direct cross-coupling of C-H bonds with Grignard reagents through cobalt catalysis. , 2011, Angewandte Chemie.
[2] G. Koten,et al. Asymmetric Induction in the Arenethiolatocopper(I)-Catalyzed Substitution Reaction of Grignard Reagents with Allylic Substrates , 2000 .
[3] B. Taylor,et al. Synthesis of enantioenriched triarylmethanes by stereospecific cross-coupling reactions. , 2012, Angewandte Chemie.
[4] J. Pospíšil,et al. Total synthesis of jerangolid D. , 2007, Journal of the American Chemical Society.
[5] B. Feringa,et al. Catalytic enantioselective conjugate addition with Grignard reagents. , 2007, Accounts of chemical research.
[6] A. Hoveyda,et al. Lewis base activation of grignard reagents with N-heterocyclic carbenes. Cu-free catalytic enantioselective additions to gamma-chloro-alpha,beta-unsaturated esters. , 2006, Journal of the American Chemical Society.
[7] J. Bäckvall,et al. Ferrocenyl Thiolates as Ligands in the Enantioselective Copper-Catalyzed Substitution of Allylic Acetates with Grignard Reagents , 2001 .
[8] A. Alexakis,et al. Enyne chlorides: substrates for copper-catalyzed asymmetric allylic alkylation. , 2012, Angewandte Chemie.
[9] R. Shintani,et al. Copper-catalyzed 1,4-addition of organoboronates to alkylidene cyanoacetates: mechanistic insight and application to asymmetric catalysis. , 2011, Angewandte Chemie.
[10] B. Feringa,et al. Catalytic asymmetric conjugate addition and allylic alkylation with Grignard reagents. , 2008, Chemical reviews.
[11] A. Hoveyda,et al. Enantioselective synthesis of alkyne-substituted quaternary carbon stereogenic centers through NHC-Cu-catalyzed allylic substitution reactions with (i-Bu)2(alkynyl)aluminum reagents. , 2011, Journal of the American Chemical Society.
[12] A. Hoveyda,et al. Synthesis of quaternary carbon stereogenic centers through enantioselective Cu-catalyzed allylic substitutions with vinylaluminum reagents. , 2010, Journal of the American Chemical Society.
[13] G. C. Micalizio,et al. Convergent and Stereospecific Synthesis of Complex Skipped Polyenes and Polyunsaturated Fatty Acids , 2010, Nature Chemistry.
[14] G. C. Micalizio,et al. Total synthesis and structure elucidation of (+)-phorbasin C. , 2009, Journal of the American Chemical Society.
[15] K. Abboud,et al. Development of biisoquinoline-based chiral diaminocarbene ligands: enantioselective SN2' allylic alkylation catalyzed by copper-carbene complexes. , 2008, The Journal of organic chemistry.
[16] Dennis G. Gillingham,et al. Highly site- and enantioselective Cu-catalyzed allylic alkylation reactions with easily accessible vinylaluminum reagents. , 2008, Journal of the American Chemical Society.
[17] R. Shintani,et al. Copper-catalyzed asymmetric addition of arylboronates to isatins: a catalytic cycle involving alkoxocopper intermediates. , 2010, Chemical communications.
[18] D. Seyferth. The Grignard Reagents , 2009 .
[19] E. Nakamura,et al. Enantioselective Copper-Catalyzed Allylic Substitution Reaction with Aminohydroxyphosphine Ligand , 2009 .
[20] B. Feringa,et al. Highly enantioselective Cu-catalysed allylic substitutions with Grignard reagents. , 2006, Chemical communications.
[21] C. Oberhuber,et al. Bidentate NHC-based chiral ligands for efficient Cu-catalyzed enantioselective allylic alkylations: structure and activity of an air-stable chiral Cu complex. , 2004, Journal of the American Chemical Society.
[22] A. Hoveyda,et al. Stereoisomerically pure trisubstituted vinylaluminum reagents and their utility in copper-catalyzed enantioselective synthesis of 1,4-dienes containing Z or E alkenes. , 2010, Angewandte Chemie.
[23] A. Alexakis,et al. Regiodivergent 1,4 versus 1,6 asymmetric copper-catalyzed conjugate addition. , 2008, Angewandte Chemie.
[24] E. Nakamura,et al. Iron-catalyzed stereospecific activation of olefinic C-H bonds with Grignard reagent for synthesis of substituted olefins. , 2011, Journal of the American Chemical Society.
[25] P. Knochel,et al. Iron-catalyzed cross-coupling of N-heterocyclic chlorides and bromides with arylmagnesium reagents. , 2012, Organic letters.
[26] Bernhard Breit,et al. Stereospezifischer und stereodivergenter Aufbau quartärer Kohlenstoffzentren durch eine schaltbare dirigierte/nicht‐dirigierte allylische Substitution , 2004 .
[27] Peng Ren,et al. Copper-catalyzed cross-coupling of functionalized alkyl halides and tosylates with secondary and tertiary alkyl Grignard reagents. , 2012, Angewandte Chemie.
[28] A. Alexakis,et al. Copper-catalyzed Enantioselective Allylic Substitution , 2011 .
[29] T. Hatakeyama,et al. Tuning chemoselectivity in iron-catalyzed Sonogashira-type reactions using a bisphosphine ligand with peripheral steric bulk: selective alkynylation of nonactivated alkyl halides. , 2011, Angewandte Chemie.
[30] A. Alexakis,et al. Formation of quaternary chiral centers by N-heterocyclic carbene-Cu-catalyzed asymmetric conjugate addition reactions with Grignard reagents on trisubstituted cyclic enones. , 2010, Chemistry.
[31] J. Bäckvall,et al. Screening of ligands in the asymmetric metallocenethiolatocopper(I)-catalyzed allylic substitution with Grignard reagents , 2006 .
[32] H. Mizutani,et al. Modular Pyridinyl Peptide Ligands in Asymmetric Catalysis: Enantioselective Synthesis of Quaternary Carbon Atoms Through Copper-Catalyzed Allylic Substitutions. , 2001, Angewandte Chemie.
[33] E. Nakamura,et al. Mechanisms of nucleophilic organocopper(I) reactions. , 2012, Chemical reviews.
[34] A. Alexakis,et al. Tandem copper-catalyzed enantioselective allylation-metathesis. , 2002, Organic letters.
[35] L. Toupet,et al. Design and synthesis of new bidentate alkoxy-NHC ligands for enantioselective copper-catalyzed conjugate addition , 2005 .
[36] A. Hoveyda,et al. A readily available chiral Ag-based N-heterocyclic carbene complex for use in efficient and highly enantioselective Ru-catalyzed olefin metathesis and Cu-catalyzed allylic alkylation reactions. , 2005, Journal of the American Chemical Society.
[37] K. Mandai,et al. Quaternary carbon stereogenic centers through copper-catalyzed enantioselective allylic substitutions with readily accessible aryl- or heteroaryllithium reagents and aluminum chlorides. , 2010, Angewandte Chemie.
[38] A. Alexakis,et al. Furanoside phosphite–phosphoroamidite and diphosphoroamidite ligands applied to asymmetric Cu-catalyzed allylic substitution reactions , 2012 .
[39] A. Alexakis,et al. Copper-catalyzed asymmetric conjugate addition of Grignard reagents to trisubstituted enones. Construction of all-carbon quaternary chiral centers. , 2006, Journal of the American Chemical Society.
[40] A. Alexakis,et al. Enantioselective copper-catalyzed conjugate addition and allylic substitution reactions. , 2008, Chemical reviews.
[41] A. Alexakis,et al. Copper-free asymmetric allylic alkylation with Grignard reagents. , 2010, Angewandte Chemie.
[42] A. Alexakis,et al. Enantioselective Copper-Catalyzed SN2′ Substitution with Grignard Reagents , 2001 .
[43] N. Kambe,et al. Cross-coupling reaction of alkyl halides with grignard reagents catalyzed by Ni, Pd, or Cu complexes with pi-carbon ligand(s). , 2008, Accounts of chemical research.
[44] A. Alexakis,et al. A highly effective phosphoramidite ligand for asymmetric allylic substitution. , 2004, Angewandte Chemie.
[45] A. Hoveyda,et al. Cu-catalyzed asymmetric allylic alkylations of aromatic and aliphatic phosphates with alkylzinc reagents. An effective method for enantioselective synthesis of tertiary and quaternary carbons. , 2004, Journal of the American Chemical Society.