TRANSITION-METAL CATALYZED ASYMMETRIC CROSS COUPLING REACTIONS - NEW LIGANDS AND THE EFFECTS OF ADDED SALTS - CRYSTAL-STRUCTURES OF [PH2PCH2CH((CH2)3SME)NME2].PDCL2 AND [PH2PCH2CH((CH2)2SME)NME2].PDCL2
暂无分享,去创建一个
[1] G. Posner. Asymmetric synthesis of carbon-carbon bonds using sulfinyl cycloalkenones, alkenolides, and pyrones , 1987 .
[2] M. Lemaire,et al. CHIRAL (MACROCYCLIC) SULFIDE-CONTAINING AND SULFIDE/ALKYLAMINO-CONTAINING LIGANDS FOR NICKEL-CATALYZED GRIGNARD CROSS-COUPLING REACTIONS , 1986 .
[3] W. Goddard,et al. Theoretical Studies of Oxidative Addition and Reductive Elimination. 3. C-H and C-C Reductive Coupling from Palladium and Platinum Bis( phosphine) Complexes , 1986 .
[4] H. Schoemaker,et al. RESOLUTION OF 2-AMINO-5-THIOMETHYL PENTANOIC ACID (HOMOMETHIONINE) WITH AMINOPEPTIDASE FROM PSEUDOMONAS-PUTIDA OR CHIRAL PHOSPHORIC-ACIDS , 1986 .
[5] H. Wynberg,et al. THE DESIGN OF RESOLVING AGENTS - CHIRAL CYCLIC PHOSPHORIC-ACIDS , 1985 .
[6] J. Griffin,et al. L-CYSTEINE-DERIVED, L-METHIONINE-DERIVED, AND D-PENICILLAMINE-DERIVED LIGANDS FOR TRANSITION-METAL CATALYZED CARBON CARBON BOND-FORMING REACTIONS , 1985 .
[7] E. Eliel,et al. Neighboring group participation by sulfur involving four-membered-ring intermediates (RS-4) , 1985 .
[8] A. Nakamura,et al. An associative mechanism for reductive elimination of d8 NiR2(PR3)2 , 1984 .
[9] A. Katritzky,et al. Pyrylium Mediated Transformations of Primary Amino Groups into Other Functional Groups. New Synthetic Methods (41) , 1984 .
[10] M. Kumada,et al. Dichloro[1,1'-bis(diphenylphosphino)ferrocene]palladium(II): an effective catalyst for cross-coupling of secondary and primary alkyl Grignard and alkylzinc reagents with organic halides , 1984 .
[11] Takakazu Yamamoto,et al. Phosphine-induced reductive elimination from cis-arylmethylnickel(II) complexes having a 1,2-bis(dimethylphosphino)ethane ligand , 1983 .
[12] M. Kumada,et al. Chiral (.beta.-aminoalkyl)phosphines. Highly efficient phosphine ligands for catalytic asymmetric Grignard cross-coupling , 1983 .
[13] G. Consiglio,et al. Asymmetric nickel catalysis in the cross-coupling reaction of aryl halides with grignard reagents. A study of the factors influencing asymmetric induction , 1983 .
[14] M. Kumada,et al. Asymmetric synthesis catalyzed by chiral ferrocenylphosphine-transition metal complexes. 2. Nickel- and palladium-catalyzed asymmetric Grignard cross-coupling , 1986 .
[15] L. Frye,et al. Asymmetric induction during organometallic conjugate addition to enantiomerically pure 2-(arylsulfinyl)-2-cyclopentenones , 1982 .
[16] S. Colonna,et al. Synthesis of new chiral phase-transfer catalysts and their application to michael additions. , 1981 .
[17] Yoshiyuki Nakamura,et al. Mechanisms of thermal decomposition of trans- and cis-dialkylbis-(tertiary phosphine) palladium(II). Reductive elimination and trans to cis isomerization. , 1981 .
[18] R. Hoffmann,et al. Reductive Elimination of d8-Organotransition Metal Complexes , 1981 .
[19] J. Kochi,et al. Mechanism of biaryl synthesis with nickel complexes , 1979 .
[20] J. Kochi,et al. Mechanism of oxidative addition. Reaction of nickel(0) complexes with aromatic halides , 1979 .
[21] E. Negishi,et al. Selective carbon-carbon bond formation via transition metal catalysis. 3. A highly selective synthesis of unsymmetrical biaryls and diarylmethanes by the nickel- or palladium-catalyzed reaction of aryl- and benzylzinc derivatives with aryl halides , 1977 .
[22] S. Terashima,et al. Stereochemical studies. XLVII. Asymmetric reduction of 2-alkyl-1,3,4-cyclopentanetriones with lithium aluminum hydride decomposed by optically active .BETA.-aminoalcohols. Syntheses of optically active allethrolone and prostaglandin E1. , 1977 .
[23] W. Wechter,et al. Isomeric inversion of ibuprofen (R)-enantiomer in humans. , 1976, Journal of pharmaceutical sciences.
[24] Giambattista Consiglio,et al. Stereoselektive Bildung der C‐C‐Bindung in der Kopplungsreaktion zwischen sek. Alkylmagnesiumbromiden und ungesättigten Halogeniden: Asymmetrische Induktion durch einen optisch aktiven Diphosphin‐Nickel‐Komplex , 1973 .
[25] P. Main,et al. The application of phase relationships to complex structures. III. The optimum use of phase relationships , 1971 .
[26] L. Birkofer,et al. α‐Amino‐ω‐mercapto‐carbonsäuren , 1963 .
[27] A. Kjær,et al. A Convenient Synthesis of DL-homoMethionine (5-Methylthio-norvaline). , 1955 .
[28] F. Lingens,et al. Aminosäure-Synthesen mit Acylaminomalonsäure-dimethylestern , 1954 .
[29] R. Bowman,et al. 272. N-substituted amino-acids. Part I. A new method of preparation of dimethylamino-acids , 1950 .
[30] T. Lavine. The formation, resolution, and optical properties of the diastereoisomeric sulfoxides derived from L-methionine. , 1947, The Journal of biological chemistry.