IDENTIFICATION OF VARIOUS INTERMEDIATES IN THE REACTION OF CUPRIC IONS WITH CYANIDE IONS BY ESR SPECTROSCOPY. APPLICATION OF A NEW RAPID-FREEZING APPARATUS
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Reference15 articles.
1. Complexes in Oxidation–Reduction Reactions. The Copper(II)–Cyanide Reaction
2. The Stability of the Tetracyanocuprate(II) Complex from E.M.F. Measurements in a Methanol-Water Solvent at Low Temperature.
3. Spectrophotometric and Reaction Kinetic Studies of the Tetracyanocuprate(II) Complex in Methanol-Water Mixtures at Low Temperatures.
4. A Stopped-flow Kinetic Study of the Copper(II) Cyanide Reaction in Water and in Aqueous Methanol.
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1. Ternary Cu(II) complexes, Cu(H−1L)(ACys−) and Cu(H−2L)(ACys−); L=peptides, ACys−=N-acetyl-cysteinate. Analogous complexes to the intermediates in the transport of Cu(II) from Cu(H−2L) to cysteine;Journal of Inorganic Biochemistry;2006-03
2. Cu(II) Complexes of Glutathione. Coordination Mode, Spectroscopic Properties, and Lability;Chemistry Letters;1991-08
3. Spin trapping of short-lived phosphorus-containing inorganic radicals.;NIPPON KAGAKU KAISHI;1989
4. Interaction modes between heavy metal ions and water-soluble polymers. 2. Spectroscopic and magnetic reexamination of the aqueous solutions of cupric ions and poly(acrylic acid);Journal of the American Chemical Society;1986-06
5. Complexation reaction of a copper(II)—glycinepeptide complex with cysteine: electron spin resonance evidence for the formation of a ternary complex from copper(II), glycinepeptide and cysteine;Inorganica Chimica Acta;1986-01
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