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Siegfried R. Waldvogel Stamo Mentizi Axel Kirste Boron-Doped Diamond Electrodes for Electroorganic Chemistry Gerald Pratsch Markus R. Heinrich Modern Developments in Aryl Radical Chemistry Gregory K. Friestad Radical Additions to Chiral Hydrazones: Stereoselectivity and Functional Group Compatibility Andreas Gansäuer Lei Shi Matthias Otte Inga Huth Antonio Rosales Iris Sancho-Sanz Natalia M. Padial J. Enrique Oltra Hydrogen Atom Donors: Recent Developments Ullrich Jahn Radicals in Transition Metal Catalyzed Reactions? Transition Metal Catalyzed Radical Reactions? - A Fruitful Interplay Anyway Part 1. Radical Catalysis by Group 4 to Group 7 Elements Ullrich Jahn Radicals in Transition Metal Catalyzed Reactions? Transition Metal Catalyzed Radical Reactions? - A Fruitful Interplay Anyway Part 2. Radical Catalysis by Group 8 and 9 Elements Ullrich Jahn Radicals in Transition Metal Catalyzed Reactions? Transition Metal Catalyzed Radical Reactions?: A Fruitful Interplay Anyway Part 3: Catalysis by Group 10 and 11 Elements and Bimetallic Catalysis.
Chemistry. --- Inorganic chemistry. --- Organic chemistry. --- Electrochemistry. --- Organic Chemistry. --- Inorganic Chemistry. --- Radicals (Chemistry) --- Chemical radicals --- Physical sciences --- Functional groups --- Chemistry, Organic. --- Chemistry, inorganic. --- Inorganic chemistry --- Chemistry --- Inorganic compounds --- Organic chemistry --- Chemistry, Physical and theoretical
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The work presented in Thomas M. Gøgsig's thesis deals with the discovery of new metal-catalyzed transformations ranging from Kumada-, Heck- and Suzuki-type reactions. The thesis starts with a formidable introduction to Pd-catalyzed cross-coupling reactions. New results have been obtained on: (i) Pd-catalyzed 1,2-migration reactions, (ii) Pd-catalyzed Heck reactions employing heteroaromatic tosylates, (iii) Ni-catalyzed Heck reactions, and (iv) Pd-catalyzed carbonylative Heck reactions. Metal-catalyzed cross-coupling reactions are today a highly competititve field (the 2010 Nobel Prize in Chemistry was awarded "for palladium-catalyzed cross couplings in organic synthesis", the 2001 and 2005 Nobel Prizes in closely related fields). Thomas M. Gøgsig obtained new results in his thesis that will help to improve the outcome of catalytic processes and improve their scope. The results will thus become key references for tomorrow's new applications. All chapters include insightful discussions and in-depth descriptions of the key principles of these new discoveries.
Functional groups. --- Physical organic chemistry -- Research -- Congresses. --- Physical organic chemistry. --- Chemistry --- Physical Sciences & Mathematics --- Organic Chemistry --- Transition metal hydrides. --- Chemistry. --- Organometallic chemistry. --- Catalysis. --- Organometallic Chemistry. --- Hydrides --- Transition metal compounds --- Chemistry, Organic. --- Activation (Chemistry) --- Chemistry, Physical and theoretical --- Surface chemistry --- Organic chemistry --- Chemistry, Organometallic --- Metallo-organic chemistry --- Chemistry, Organic --- Physical sciences --- Organometallic chemistry .
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