Indenyl effect in dissociative reactions. Nucleophilic substitution in iron carbonyl complexes: a case study
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2011/DT/C1DT00010A
Reference80 articles.
1. Reactions of π-indenyl complexes of transition metals. Part I. Kinetics and mechanisms of reactions of tricarbonyl-π-indenylmethylmolybdenum with phosphorus(III) ligands
2. The indenyl ligand effect on the rate of substitution reactions of Rh(η-C9H7)(CO)2and Mn(η-C9H7)(CO)3
3. Kinetics and mechanism of the substitution reactions of (.eta.5-pentamethylcyclopentadienyl)dicarbonylrhodium(I) and (.eta.5-pentamethylcyclopentadienyl)dicarbonylcobalt(I)
4. Reactions of tricarbonyl-π-cyclopentadienylhalomolybdenum(II) complexes with phosphorus(III) ligands: a kinetic study
5. Reactions of-π-indenyl complexes of transition metals. III. Kinetics and mechanisms of substitution reactions of tricarbonyl-π-indenylhalomolybdenum(II) complexes
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1. Benz[e]indenyl and benz[f]indenyl molybdenum compounds: evidence of the η3-coordination mode;New Journal of Chemistry;2023
2. Structure, electronic properties and slippage of cyclopentadienyl and indenyl ligands in the (η5-C5H5) (η3-C5H5) W(CO)2 and (η5-C9H7) (η3-C9H7)W(CO)2 complexes: A C-PCM investigation;Journal of Molecular Liquids;2021-05
3. The conductor‐like polarizable continuum model study of indenyl effect on the ligand substitution reaction in the (η 5 ‐C 9 H 7 )Co(CO) 2 complex;International Journal of Chemical Kinetics;2021-03-22
4. Quantum‐chemical calculations on the slippage of cyclopentadienyl and indenyl ligands in the (η 3 ‐dienyl) Ir(PX 3 ) 3 ; (X = H, F, Cl, Me ) complexes;Journal of the Chinese Chemical Society;2020-12-22
5. Stacking interactions of aromatic ligands in transition metal complexes;Coordination Chemistry Reviews;2020-09
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