Reactions of μ3-Alkenyl Triruthenium Carbonyl Clusters with Alkynes: Synthesis of Trinuclear μ-//-Alkyne, μ-Vinylidene, and μ-Dienoyl Derivatives
Author:
Publisher
Wiley
Subject
General Chemistry,Catalysis,Organic Chemistry
Reference72 articles.
1. Reactivity of a face-bridged trinuclear ruthenium carbonyl cluster with diphenylacetylene and triorganotin hydrides. Attempted hydrostannation of diphenylacetylene
2. Incorporation of silanes and diphenylacetylene into face-bridged triruthenium carbonyl clusters. Attempted hydrosilylation of diphenylacetylene
3. Synthesis and structural characterization of triruthenium cluster complexes containing bridging .eta.1-phenyl and terminal .eta.1-phenyl ligands arising from the cleavage of triphenylphosphine ligands
4. Tricyclohexylphosphine- versus Triphenylphosphine-Substituted Derivatives of a Face-Bridged Triruthenium Carbonyl Cluster Complex. A Comparative Study of Their Synthesis, Structure, and Catalytic Activity in the Homogeneous Hydrogenation of Diphenylacetylene
5. Synthesis, structure and hydrogenation catalytic activity of [Ru3(μ3,η2-ampy)(μ,η1:η2-PhCCHPh)(CO)6(PPh3) (Hampy = 2-amino-6-methylpyridine)
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1. Trans-stereochemistry from the insertion of alkynes into a ruthenium - carbon bond of a bridging-phenyl ligand;Journal of Organometallic Chemistry;2021-07
2. Reversible Transformation of a μ3-η3-C3 Ring into μ3-η2-Ethyne and μ-Vinylidene Ligands at a Triruthenium Site upon Deprotonation and Protonation;Organometallics;2020-11-25
3. Alkyne activation and polyhedral reorganization in benzothiazolate-capped osmium clusters on reaction with diethyl acetylenedicarboxylate (DEAD) and ethyl propiolate;Dalton Trans.;2017
4. Reactivity of Alkyne-Substituted Transition Metal Clusters: An Overview;Journal of Cluster Science;2013-09-29
5. The Bridging Acetylene to Bridging Vinylidene Rearrangement in a Triruthenium Carbonyl Cluster: A DFT Mechanistic Study;Organometallics;2010-08-03
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