Metal–ligand complex formation in the presence of micelles. Part 2.—Kinetics of the reaction between copper (II) and 1-phenylbutane-1,3-dione (benzoylacetone) in the presence of non-ionic micelles of polyoxyethylene n-dodecyl ether
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
Physical and Theoretical Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/1992/FT/FT9928801285
Reference23 articles.
1. Metal–ligand complex formation in the presence of ionic micelles. Equilibrium and kinetics of the reaction between copper(II) and benzoylacetone in the presence of ionic micelles of SDS or DTACl
2. Micellar catalysis of metal-complex formation. Kinetics of the reaction between NiII and pyridine-2-azo-p-dimethylaniline (PADA) in the presence of sodium dodecylsulphate micelles; a model system for the study of metal ion reactivity at charged interfaces
3. Kinetics and mechanism of fast metal–ligand substitution processes in aqueous and micellar solutions studied by means of a dye laser photochemical relaxation technique
4. Metal–ion complexation reactions in the presence of surfactants. Part 2.—Mechanism of pH-dependent reaction between nickel(II) and murexide in aqueous solution and application of the reaction to study of micellar phenomena
5. Kinetic investigation and numerical analysis of a “micelle-catalysed” metal complex formation
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2. Micellar effect on the sensitivity of spectrophotometric Mo(VI) determination based on the formation of gallic acid complex providing evidence for the polyoxoanion structure of molybdate ions;Analytica Chimica Acta;2007-05
3. Rate of Interfacial Reactions Compared to Bulk Reactions in Liquid–Liquid and Micellar Processes: An Attempt to Clarify a Confusing Situation;Journal of Colloid and Interface Science;2001-11
4. Formation of chromium(III) complexes with 8‐hydroxyquinoline derivatives in nonionic micellar solutions;Journal of Environmental Science and Health, Part A;1998-11
5. Micellar solutions as reaction media;Tetrahedron;1996-08
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