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Catalysis. --- Rhodium catalysts. --- Chemical bonds. --- Organorhodium compounds. --- Rhodium organic compounds --- Organotransition metal compounds --- Rhodium compounds --- Bonds, Chemical --- Chemical structure --- Chemistry, Physical and theoretical --- Overlap integral --- Quantum chemistry --- Valence (Theoretical chemistry) --- Platinum group catalysts --- Activation (Chemistry) --- Surface chemistry
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Organic compounds --- Iridium catalysts. --- Asymmetric synthesis. --- Synthesis. --- Asymmetric induction --- Induction, Asymmetric --- Synthesis, Asymmetric --- Asymmetry (Chemistry) --- Catalysts, Iridium --- Platinum group catalysts --- Chemistry, Organic --- Chemistry, Synthetic organic --- Organic synthesis (Chemistry) --- Synthetic organic chemistry --- Synthesis
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Chemistry, Organic --- Platinum group catalysts --- Chimie organique --- Platine, Groupe du --- Synthesis --- Synthèse --- Catalyseurs --- Organic compounds --- 547.056 --- Organic chemistry--Synthesis --- Synthesis. --- Synthèse --- Catalysts --- Chemistry, Synthetic organic --- Organic synthesis (Chemistry) --- Synthetic organic chemistry --- Organic compounds. --- Organic compounds - Synthesis --- Hydrogenation by catalysis --- Catalysis --- Coordination compounds --- Reaction (chemistry) --- Transition metals
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From the contents: Robert H Crabtree: Introduction and History. - Montserrat Diéguez, Oscar Pàmies and Carmen Claver: Iridium-catalysed hydrogenation using phosphorous ligands. - David H. Woodmansee and Andreas Pfaltz: Iridium Catalyzed Asymmetric Hydrogenation of Olefins with Chiral N,P and C,N Ligands. - Ourida Saidi and Jonathan M J Williams: Iridium-catalyzed Hydrogen Transfer Reactions. - John F. Bower and Michael J. Krische: Formation of C-C Bonds via Iridium Catalyzed Hydrogenation and Transfer Hydrogenation. - Jongwook Choi, Alan S. Goldman: Ir-Catalyzed Functionalization of CH Bonds. - Mark P. Pouy and John F. Hartwig: Iridium-Catalyzed Allylic Substitution. - Daniel Carmona and Luis A. Oro: Iridium-catalyzed 1.3-dipolar cycloadditions.
Chemistry --- Physical Sciences & Mathematics --- Organic Chemistry --- Iridium catalysts. --- Catalysis. --- Catalysts, Iridium --- Chemistry. --- Organic chemistry. --- Organometallic chemistry. --- Organometallic Chemistry. --- Organic Chemistry. --- Activation (Chemistry) --- Chemistry, Physical and theoretical --- Surface chemistry --- Platinum group catalysts --- Chemistry, Organic. --- Organic chemistry --- Organometallic chemistry . --- Chemistry, Organometallic --- Metallo-organic chemistry --- Chemistry, Organic
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The series Topics in Organometallic Chemistry presents critical overviews of research results in organometallic chemistry. As our understanding of organometallic structure, properties and mechanisms increases, new ways are opened for the design of organometallic compounds and reactions tailored to the needs of such diverse areas as organic synthesis, medical research, biology and materials science. Thus the scope of coverage includes a broad range of topics of pure and applied organometallic chemistry, where new breakthroughs are being achieved that are of significance to a larger scientific audience. The individual volumes of Topics in Organometallic Chemistry are thematic. Review articles are generally invited by the volume editors. All chapters from Topics in Organometallic Chemistry are published OnlineFirst with an individual DOI. In references, Topics in Organometallic Chemistry is abbrev iated as Top Organomet Chem and cited as a journal.
Chemistry. --- Organometallic chemistry. --- Physical chemistry. --- Catalysis. --- Organometallic Chemistry. --- Physical Chemistry. --- Activation (Chemistry) --- Chemistry, Physical and theoretical --- Surface chemistry --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- Chemistry, Organometallic --- Metallo-organic chemistry --- Chemistry, Organic --- Physical sciences --- Chemistry, Organic. --- Chemistry, Physical organic. --- Chemistry, Physical organic --- Organic chemistry --- Rhodium catalysts. --- Rhodium. --- Platinum group catalysts --- Platinum group --- Organometallic chemistry .
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In the last decade there have been numerous advances in the area of rhodium-catalyzed hydroformylation, such as highly selective catalysts of industrial importance, new insights into mechanisms of the reaction, very selective asymmetric catalysts, in situ characterization and application to organic synthesis. The views on hydroformylation which still prevail in the current textbooks have become obsolete in several respects. Therefore, it was felt timely to collect these advances in a book. The book contains a series of chapters discussing several rhodium systems arranged according to ligand type, including asymmetric ligands, a chapter on applications in organic chemistry, a chapter on modern processes and separations, and a chapter on catalyst preparation and laboratory techniques. This book concentrates on highlights, rather than a concise review mentioning all articles in just one line. The book aims at an audience of advanced students, experts in the field, and scientists from related fields. The didactic approach also makes it useful as a guide for an advanced course.
Hydroformylation. --- Rhodium catalysts. --- Chemistry, inorganic. --- Chemistry, Physical organic. --- Chemical engineering. --- Chemistry, Organic. --- Inorganic Chemistry. --- Physical Chemistry. --- Industrial Chemistry/Chemical Engineering. --- Organic Chemistry. --- Inorganic chemistry. --- Physical chemistry. --- Organic chemistry. --- Organic chemistry --- Chemistry --- Chemistry, Industrial --- Engineering, Chemical --- Industrial chemistry --- Engineering --- Chemistry, Technical --- Metallurgy --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Inorganic chemistry --- Inorganic compounds --- Platinum group catalysts --- Formylation --- Hydroxylation
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