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Autore: | Kalck Philippe |
Titolo: | Modes of Cooperative Effects in Dinuclear Complexes [[electronic resource] /] / edited by Philippe Kalck |
Pubblicazione: | Cham : , : Springer International Publishing : , : Imprint : Springer, , 2023 |
Edizione: | 1st ed. 2023. |
Descrizione fisica: | 1 online resource (241 pages) |
Disciplina: | 541.2242 |
Soggetto topico: | Organometallic chemistry |
Chemical structure | |
Catalysts | |
Organometallic Chemistry | |
Structure And Bonding | |
Catalyst Synthesis | |
Soggetto non controllato: | Chemistry |
Science | |
Persona (resp. second.): | KalckPhilippe |
Nota di contenuto: | Dinuclear Reactivity of One Metal Exalted by the Second One -- Chemical Transformations in Heterobimetallic Complexes Facilitated by the Second Coordination Sphere -- Role of a Redox-Active Ligand Close to a Dinuclear Activating Framework -- Bimetallic oxidative addition or reductive elimination on M-M’ -- Magnetism in Binuclear Compounds: Theoretical Insights. |
Sommario/riassunto: | This book presents recent advances in dinuclear complexes in which the metal-metal cooperative effect operates for obtaining substrate activation and high performance catalysts. Catalysis continues to be a fast expanding area to design efficient tools in synthesis and in industrial chemistry. It allows performing syntheses with short reaction times, atom economy, reduced consumption of energy and loss of reagents, and low level of wastes. Dinuclear complexes are known to be more efficient than the mononuclear analogues for the reaction rates and the selectivities. This book analyses the latest research, focusing on the key concepts, in building and using these dinuclear complexes. The book is aimed at researchers, graduate students and chemists at all levels in academia and industry. |
Titolo autorizzato: | Modes of Cooperative Effects in Dinuclear Complexes |
ISBN: | 9783031322501 |
9783031322495 | |
Formato: | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione: | Inglese |
Record Nr.: | 9910768164103321 |
Lo trovi qui: | Univ. Federico II |
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