Ligand substitution process in tetranuclear metal carbonyl clusters
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry
Reference20 articles.
1. Tetranuclear carbonyl clusters
2. Recent results in the chemistry of transition metal clusters with organic ligands
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5. Molecular Metal Clusters
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2. Directed Synthesis of the Triangular Mixed-Metal Cluster H2RhRe2Cp*(CO)9: Ligand Fluxionality and Facile Cluster Fragmentation in the Presence of CO, Halogenated Solvents, and Thiols;Organometallics;2009-12-10
3. Diphosphine ligand chelation and bridging and regiospecific ortho metalation in the reaction of 4,5-bis(diphenylphosphino)-4-cyclopenten-1,3-dione (bpcd) with Ir4(CO)12: X-ray diffraction structures of Ir4(CO)7(μ-CO)3(bpcd), Ir4(CO)5(μ-CO)3(bpcd)(μ-bpcd), and HIr4(CO)4(μ-CO)3(bpcd)[μ-PhP(C6H4)CC(PPh2)C(O)CH2C(O)];Journal of Organometallic Chemistry;2008-04
4. Kinetics and mechanism of the displacement of CO from Co-4(CO)(12) by phosphite ligands;Transition Metal Chemistry;2003
5. Systematic substitution kinetics of the clusters Ru3(CO)11L and Ru3(CO)10L2 (L = P-donor ligands): The unimolecular path;Canadian Journal of Chemistry;1995-07-01
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