1977 - Fellow of Alfred P. Sloan Foundation
The scientist’s investigation covers issues in Organic chemistry, Catalysis, Palladium, Aryl and Chemical synthesis. His research combines Medicinal chemistry and Organic chemistry. His Medicinal chemistry research integrates issues from Thiophene and Thioanisole.
His studies in Catalysis integrate themes in fields like Oxygen gas, Acetal, Silanes and Solvent. He interconnects Annulation, Polymer chemistry, Oxygen, Combinatorial chemistry and Bicyclic molecule in the investigation of issues within Palladium. In his study, Halogen is strongly linked to Ring, which falls under the umbrella field of Aryl.
Richard C. Larock focuses on Palladium, Catalysis, Organic chemistry, Medicinal chemistry and Aryl. The concepts of his Palladium study are interwoven with issues in Regioselectivity, Polymer chemistry, Annulation, Oxidative addition and Intramolecular force. His Catalysis research is multidisciplinary, incorporating perspectives in Combinatorial chemistry and Halide.
Richard C. Larock performs multidisciplinary study in the fields of Organic chemistry and Chemical synthesis via his papers. His Medicinal chemistry research incorporates themes from Triple bond, Organopalladium, Ring and Nucleophile. His study in Aryl is interdisciplinary in nature, drawing from both Alkyne, Iodide, Isoquinoline and Intermolecular force.
Richard C. Larock mainly focuses on Catalysis, Organic chemistry, Medicinal chemistry, Palladium and Combinatorial chemistry. His studies examine the connections between Catalysis and genetics, as well as such issues in Stereochemistry, with regards to Bromine. Richard C. Larock integrates many fields, such as Organic chemistry and Chemical synthesis, in his works.
His Medicinal chemistry research is multidisciplinary, relying on both Ring, Halogenation and Alkyl. The various areas that Richard C. Larock examines in his Palladium study include Halide, Aryl, Annulation and Regioselectivity. His Aryl research focuses on subjects like Iodide, which are linked to Intramolecular force.
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Synthesis of Heterocycles via Palladium π-Olefin and π-Alkyne Chemistry
Gilson Zeni;Richard C. Larock.
Chemical Reviews (2004)
Synthesis of heterocycles via palladium-catalyzed oxidative addition.
Gilson Zeni;Richard C. Larock.
Chemical Reviews (2006)
Synthesis of indoles via palladium-catalyzed heteroannulation of internal alkynes
Richard C. Larock;Eul Kgun Yum.
Journal of the American Chemical Society (1991)
Synthesis of 2,3-Disubstituted Indoles via Palladium-Catalyzed Annulation of Internal Alkynes
R. C. Larock;E. K. Yum;M. D. Refvik.
Journal of Organic Chemistry (1998)
AuCl3-Catalyzed Synthesis of Highly Substituted Furans from 2-(1-Alkynyl)-2-alken-1-ones
Tuanli Yao;Xiaoxia Zhang;Richard C. Larock.
Journal of the American Chemical Society (2004)
Synthesis of Isocoumarins and α-Pyrones via Electrophilic Cyclization
Tuanli Yao;Richard C. Larock.
Journal of Organic Chemistry (2003)
Palladium-Catalyzed Oxidation of Primary and Secondary Allylic and Benzylic Alcohols
Karl P. Peterson;Richard C. Larock.
Journal of Organic Chemistry (1998)
Synthesis of 2,3-disubstituted benzo[b]furans by the palladium-catalyzed coupling of o-iodoanisoles and terminal alkynes, followed by electrophilic cyclization
Dawei Yue;Tuanli Yao;Richard C. Larock.
Journal of Organic Chemistry (2005)
Synthesis of Aromatic Heterocycles via Palladium-Catalyzed Annulation of Internal Alkynes
Richard C. Larock;Eul K. Yum;Mark J. Doty;Kelvin K. C. Sham.
Journal of Organic Chemistry (1995)
Synthesis of Highly Substituted Furans by the Electrophile-Induced Coupling of 2-(1-Alkynyl)-2-alken-1-ones and Nucleophiles
Tuanli Yao;Xiaoxia Zhang;Richard C Larock.
Journal of Organic Chemistry (2005)
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