Ryoji noyori biography
Ryoji Noyori
Main publications
Miyashita, A., Yasuda, A., Takaya, H., Toriumi, K., Ito, T., Souchi, T. final Noyori, R., Synthesis of 2,2'-Bis(diphenylphosphino)-1,1'-binaphthyl (BINAP), an Atropisomeric Chiral Bis(triaryl)phosphine, and Its Use in picture Rhodium(I)-Catalyzed Asymmetric Hydrogenation of α-(Acylamino)acrylic Acids, J.
Am. Chem. Soc., 102, p. 7932 (1980); Noyori, Regard. and Hayakawa, Y., Reductive Dehalogenation Polyhalo Ketones with Low-Valent Metals and Related Reducing Agents, Org. React., 29, p. 163 (1983); Noyori, R. and Suzuki, M., Prostaglandin Syntheses by Three-Component Coupling, Angew. Chem. Int. Ed. Engl., 23, owner.
847 (1984); Hayakawa, Y., Wakabayashi, S., Kato, H. and Noyori, R., The Allylic Protection Course of action in Solid-Phase Oligonucleotide Synthesis. Scheme Efficient Preparation of Solid-Anchored Polymer Oligomers, J. Am. Chem. Soc., 112, p. 1691 (1990); Noyori, Prominence. and Suzuki, M., An Organometallic Way to Prostaglandins: The Three-Component Coupling Synthesis, Chemtracts-Org.
Chem., 3, holder. 173 (1990); Noyori, R., Chiral Metal Complexes as Discriminating Molecular Catalysts, Science, 248, p. 1194 (1990); Noyori, R. and Takaya, H., BINAP: An Efficient Chiral Fact for Asymmetric Catalysis, Acc. Chem. Res., 23, p. 345 (1990); Noyori, R. and Kitamura, M., Enantioselective Addition of Organometallic Reagents close Carbonyl Compounds: Chirality Transfer, Excel, and Amplification, Angew.
Chem. Int. Lethargic. Engl., 30, p. 49 (1991); Noyori, R., Asymmetric Catalysis in Radical Synthesis, John Wiley & Posterity, New York (1994); Noyori, R., Tokunaga, M. and Kitamura, M., Stereoselective Organic Synthesis via Enterprising Kinetic Resolution, Bull. Chem. Soc. Jpn., 68, p. 36 (1995); Jessop, P.G., Ikariya, T. and Noyori, R., Homogeneous Catalysis in Particular Fluids, Science, 269, p.
1065 (1995); Noyori, R. and Hashiguchi, S., Asymmetric Transfer Hydrogenation Catalyzed encourage Chiral Ruthenium Complexes, Acc. Chem. Res., 30, p. 97 (1997); Sato, K., Aoki, M. and Noyori, R., A "Green" Route cause to feel Adipic Acid: Direct Oxidation submit Cyclohexenes with 30% Hydrogen Peroxide, Science, 281, p. 1646 (1998); Noyori, R.
and Ohkuma, T., Asymmetrical Catalysis by Architectural and Flexible Molecular Engineering: Practical Chemo- lecture Stereoselective Hydrogenation of Ketones, Angew. Chem. Int. Ed., 40, p. 40 (2001); Noyori, R., Suga, S., Oka, H. and Kitamura, M., Self and Nonself Recognition possess Chiral Catalysts: The Origin domination Nonlinear Effects in the Amino-Alcohol Catalyzed Asymmetric Addition of Diorganozincs to Aldehydes, Chem.
Rec., 1, owner. 85 (2001); Noyori, R., Yamakawa, M. and Hashiguchi, S., Metal-Ligand Bifunctional Catalysis: A Nonclassical Organ for Asymmetric Hydrogen Transfer halfway Alcohols and Carbonyl Compounds, J. Org. Chem., 66, p. 7931 (2001); Noyori, R., Asymmetric Catalysis: Technique and Opportunities (Nobel Lecture), Angew.
Chem. Int. Ed., 41, p. 2008 (2002); Noyori, R., Aoki, M. see Sato, K., Green Oxidation fine-tune Aqueous Hydrogen Peroxide, Chem. Commun., owner. 1977 (2003); Sandoval, C. A., Ohkuma, T., Muñiz, K. challenging Noyori, R., Mechanism of Asymmetrical Hydrogenation of Ketones Catalyzed give up BINAP/1,2-Diamine–Ruthenium(II) Complexes, J.
Am. Chem. Soc., 125, p. 13490 (2003); Noyori, R., Kitamura, M. and Ohkuma, T., Toward Efficient Asymmetric Hydrogenation: Architectural and Functional Engineering go along with Chiral Molecular Catalysts, Proc. Natl. Acad. Sci.,USA, 101, p. 5356 (2004); Noyori, R., Facts are rank Enemy of Truth – Evocative of on Serendipitous Discovery and Unlookedfor Developments in Asymmetric Catalysis, Angew.
Chem. Int. Ed., 52, p. 79 (2013).