SOLID-STATE STRUCTURE AND REACTIVITY IN SOLUTION. 3. Mechanism of the Reaction of (3,6-Dithiaoctane)Tetracarbonylchromium(0) with Phosphites
Author:
Publisher
Informa UK Limited
Subject
Materials Chemistry,Physical and Theoretical Chemistry
Link
http://www.tandfonline.com/doi/pdf/10.1080/10256018808623883
Reference14 articles.
1. Solid state structure and reactivity in solution. II. The crystal and molecular structure of (2,2,7,7-tetramethyl-3,6-dithiaoctane)-tetracarbonylchromium(0)
2. Robert, A. Welch Foundation Post-doctoral Fellow
3. Octahedral metal carbonyls: reactions and bonding. VII. Kinetics of the substitution reactions of 2,5-dithiahexane complexes of chromium hexacarbonyl and molybdenum hexacarbonyl
4. Octahedral metal carbonyls. XI. Reactions of Group VIb metal carbonyl derivatives of 2,2,7,7-tetramethyl-3,6-dithiaoctane
5. Octahedral metal carbonyls. XIII. Kinetics of reactions of metal carbonyl complexes containing six-membraned chelate rings
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1. Volume of activation as mechanistic indicator in substitution reactions of organometallic complexes;High Pressure Research;1990-04
2. Influence of atomic size on mechanism: displacement of chelating ligands coordinating through sulfur from their chromium and molybdenum carbonyl complexes;Inorganic Chemistry;1989-05
3. Octahedral metal carbonyls. 66. Rates and mechanism of chelate ring displacement from tetracarbonyltungsten complexes of dithiaalkanes forming seven- and eight-membered chelating rings;Inorganic Chemistry;1989-02
4. High Pressure Studies of Inorganic Reaction Mechanisms;High Pressure Chemistry and Biochemistry;1987
5. Solid state structure and reactivity in solution. 8. Implications of the structure of [1,2-bis(diphenylphosphino)ethane] tetra-carbonylmolybdenum(0) to the chelate effect;Inorganica Chimica Acta;1986-11
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