The mechanism of pericyclic organometallic reactions. Competitive [4,4]-sigmahaptotropic rearrangement versus metal-hydride shift
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry
Reference29 articles.
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3. Intermolecular metal transfer reactions and metal hydride shift isomerizations in (cycloheptatriene)tricarbonyliron derivatives
4. Site-specific and random degenerate rearrangements in η6- and η4-cycloheptatriene metal complexes
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1. Allyl‐Allyl Coupling Promoted by Catalyst Systems with two Palladium Atoms – A Plethora of Potentially Pericyclic Processes;Angewandte Chemie International Edition;2024-06-25
2. Allyl‐Allyl Coupling Promoted by Catalyst Systems with two Palladium Atoms – A Plethora of Potentially Pericyclic Processes;Angewandte Chemie;2024-06-25
3. Pericyclic organometallic reactions. The reactions of (cht)Fe(CO)2L (L=CO, P(OPh)3, PPh3) and (carbomethoxy)maleic anhydride revisited;Journal of Organometallic Chemistry;1999-09
4. Mononuclear Iron Compounds with η1–η6 Hydrocarbon Ligands;Comprehensive Organometallic Chemistry II;1995
5. Pericyclic organometallic reactions. Cycloaddition reactions of (η4-cycloheptatriene)Ru(CO)3. Crystal structure of tricarbonyl[(2,3,4,9-η)-bicyclo[4.2.1]non-2-ene-4,9-diyl-7,7,8,8-tetracarbonitrile]ruthenium;Journal of Organometallic Chemistry;1991-02
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