Simply air:Vanadium-catalyzed oxidative kinetic resolution of methyl o-chloromandelate by ambient air
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A. Chan | Xingshu Li | Lu Yin | X. Jia
[1] Business Roundup , 2019, C&EN Global Enterprise.
[2] A. Chan,et al. A rapid and green approach to chiral α-hydroxy esters: asymmetric transfer hydrogenation (ATH) of α-keto esters in water by use of surfactants , 2009 .
[3] A. Chan,et al. Ru-catalyzed enantioselective preparation of methyl (R)-o-chloromandelate and its application in the synthesis of (S)-Clopidogrel , 2009 .
[4] M. Shi,et al. Preparation of novel axially chiral NHC–Pd(II) complexes and their application in oxidative kinetic resolution of secondary alcohols , 2009 .
[5] G. Sekar,et al. An enantiopure galactose oxidase model: synthesis of chiral amino alcohols through oxidative kinetic resolution catalyzed by a chiral copper complex , 2009 .
[6] S. B. Halligudi,et al. Oxidative kinetic resolution of alcohols using chiral Mn–salen complex immobilized onto ionic liquid modified silica , 2009 .
[7] S. B. Halligudi,et al. Synthesis of chiral sulfoxides by enantioselective sulfide oxidation and subsequent oxidative kinetic resolution using immobilized Ti–binol complex , 2009 .
[8] Y. Yamashita,et al. Cobalt-catalyzed Oxidative Kinetic Resolution of Secondary Benzylic Alcohols with Molecular Oxygen , 2009 .
[9] B. Stoltz,et al. Structural features and reactivity of (sparteine)PdCl2: a model for selectivity in the oxidative kinetic resolution of secondary alcohols. , 2008, Journal of the American Chemical Society.
[10] Wei Sun,et al. The Mn(Salen)-catalyzed oxidative kinetic resolution of secondary alcohols: reaction development and scope , 2008 .
[11] T. Ema,et al. Highly Efficient Chemoenzymatic Synthesis of Methyl (R)‐o‐Chloromandelate, a Key Intermediate for Clopidogrel, via Asymmetric Reduction with Recombinant Escherichia coli , 2008 .
[12] S. B. Halligudi,et al. A chiral Mn(III) salen complex immobilized onto ionic liquid modified mesoporous silica for oxidative kinetic resolution of secondary alcohols , 2008 .
[13] Yuecheng Zhang,et al. Oxidative kinetic resolution of 1-phenylethanol catalyzed by sugar-based salen-Mn(III) complexes. , 2008, Carbohydrate research.
[14] T. Ikariya,et al. Aerobic oxidative kinetic resolution of racemic secondary alcohols with chiral bifunctional amido complexes. , 2008, Angewandte Chemie.
[15] M. Kantam,et al. Oxidative kinetic resolution of racemic secondary alcohols catalyzed by resin supported sulfonato-Mn(salen) complex in water , 2007 .
[16] R. I. Kureshy,et al. Oxidative kinetic resolution of racemic secondary alcohols catalyzed by recyclable chiral dimeric Mn(III) salen catalysts , 2007 .
[17] A. Ragauskas,et al. Selective aerobic oxidation of activated alcohols into acids or aldehydes in ionic liquids. , 2007, The Journal of organic chemistry.
[18] Kazuhiro Matsumoto,et al. Aerobic oxidative kinetic resolution of racemic alcohols with bidentate ligand-binding Ru(salen) complex as catalyst , 2007 .
[19] R. I. Kureshy,et al. Easily recyclable chiral polymeric Mn(III) salen complexes for oxidative kinetic resolution of racemic secondary alcohols. , 2007, Chirality.
[20] T. Ema,et al. Highly enantioselective and efficient synthesis of methyl (R)-o-chloromandelate with recombinant E. coli: toward practical and green access to clopidogrel. , 2007, Organic & biomolecular chemistry.
[21] Tao Chen,et al. Axially chiral NHC-Pd(II) complexes in the oxidative kinetic resolution of secondary alcohols using molecular oxygen as a terminal oxidant. , 2007, Organic letters.
[22] Z. Dong,et al. Kinetic resolution of racemic secondary alcohols catalyzed by chiral diaminodiphosphine-Ir(I) complexes. , 2006, Organic letters.
[23] M. Sigman,et al. Recent advances in homogeneous transition metal-catalyzed aerobic alcohol oxidations , 2006 .
[24] Chien-Tien Chen,et al. Chiral N-salicylidene vanadyl carboxylate-catalyzed enantioselective aerobic oxidation of alpha-hydroxy esters and amides. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[25] David R. Jensen,et al. Ligand-modulated palladium-catalyzed aerobic alcohol oxidations. , 2006, Accounts of chemical research.
[26] M. Sigman,et al. Origin of enantioselection in chiral alcohol oxidation catalyzed by Pd[(-)-sparteine]Cl2. , 2005, Journal of the American Chemical Society.
[27] Zhen Li,et al. Insight into the mechanism of oxidative kinetic resolution of racemic secondary alcohols by using manganese(III)(salen) complexes as catalysts. , 2005, Chemistry.
[28] F. Toste,et al. Vanadium-catalyzed asymmetric oxidation of alpha-hydroxy esters using molecular oxygen as stoichiometric oxidant. , 2005, Journal of the American Chemical Society.
[29] B. Stoltz,et al. An experimentally derived model for stereoselectivity in the aerobic oxidative kinetic resolution of secondary alcohols by (sparteine)PdCl2. , 2004, Journal of the American Chemical Society.
[30] T. Punniyamurthy,et al. Novel vanadium-catalyzed oxidation of alcohols to aldehydes and ketones under atmospheric oxygen. , 2004, Organic letters.
[31] J. Ziółkowski,et al. New efficient aerobic oxidation of some alcohols with dioxygen catalysed by N-hydroxyphtalimide with vanadium co-catalysts. , 2004, Chemical communications.
[32] B. Stoltz,et al. Palladium-catalyzed oxidative kinetic resolution with ambient air as the stoichiometric oxidation gas. , 2004, Angewandte Chemie.
[33] M. Sigman,et al. Palladium-catalyzed aerobic oxidative kinetic resolution of alcohols with an achiral exogenous base. , 2003, The Journal of organic chemistry.
[34] Akiyoshi Yamauchi,et al. Oxidative kinetic resolution of racemic alcohols catalyzed by chiral ferrocenyloxazolinylphosphine-ruthenium complexes. , 2003, Journal of Organic Chemistry.
[35] David R. Jensen,et al. Scope of enantioselective palladium(II)-catalyzed aerobic alcohol oxidations with (-)-sparteine. , 2003, The Journal of organic chemistry.
[36] M. Sigman,et al. Mechanistic investigations of the palladium-catalyzed aerobic oxidative kinetic resolution of secondary alcohols using (-)-sparteine. , 2003, Journal of the American Chemical Society.
[37] B. Stoltz,et al. Palladium-catalyzed enantioselective oxidation of alcohols: a dramatic rate acceleration by Cs2CO3/t-BuOH. , 2003, Organic letters.
[38] David R. Jensen,et al. Palladium catalysts for aerobic oxidative kinetic resolution of secondary alcohols based on mechanistic insight. , 2003, Organic letters.
[39] T. Kawamura,et al. Oxovanadium complex-catalyzed aerobic oxidation of propargylic alcohols. , 2002, The Journal of organic chemistry.
[40] David R. Jensen,et al. Dual role of (-)-sparteine in the palladium-catalyzed aerobic oxidative kinetic resolution of secondary alcohols. , 2002, Journal of the American Chemical Society.
[41] B. Stoltz,et al. The palladium-catalyzed oxidative kinetic resolution of secondary alcohols with molecular oxygen. , 2001, Journal of the American Chemical Society.
[42] J. Ellman,et al. Catalytic Asymmetric Synthesis of tert-Butanesulfinamide. Application to the Asymmetric Synthesis of Amines , 1997 .
[43] K. Drauz,et al. A convenient reduction of amino acids and their derivatives , 1993 .
[44] S. Takizawa,et al. Aerobic oxidation of α-hydroxycarbonyls catalysed by trichlorooxyvanadium: efficient synthesis of α-dicarbonyl compounds , 1999 .