Mechanism of electron transfer reaction of ternary nitrilotriacetatocobalt(II) complexes involving succinate and malonate as secondary ligands
Author:
Publisher
Wiley
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry
Reference31 articles.
1. Ternary complexes in solution. 34. Discriminating and stability increasing properties of the imidazole moiety in mixed-ligand complexes
2. Evidence for intramolecular aromatic-ring stacking in the physiological pH range of the monodeprotonated xanthine residue in mixed-ligand complexes containing xanthosinate 5′-monophosphate (XMP)
3. Enhancement of cytolytic activity of human peripheral blood lymphocytes by sodium periodate (IO4) possible involvement of protein kinase C
4. Peroxidase-labelling of human serum transferrin by conjugation to oligosaccharide moieties
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1. Biological Effect, Aquation, and Kinetics of Oxidation of Bis(2-aminobenzothiazole)dichlorocobalt(II) Complex by Periodate in Aqueous Acidic Medium;International Journal of Chemical Kinetics;2013-09-21
2. Electron transfer mechanism for the oxidation of ternary N-(2-acetamido)iminodiacetatocobaltate(II) complexes involving succinate and maleate as secondary ligands by periodate;Transition Metal Chemistry;2012-05-29
3. Kinetics and mechanism of periodate oxidation of two ternary nitrilotriacetatochromium(III) complexes involving histidine and aspartate co-ligands;Transition Metal Chemistry;2009-11-03
4. Inner-sphere oxidation of ternary nitrilotriacetatocobalt(II) complexes involving oxalate and phthalate by periodate;Transition Metal Chemistry;2009-05-26
5. Inner-sphere oxidation of ternary iminodiacetatochromium(III) complexes involving DL-valine and L-arginine as secondary ligands. Isokinetic relationship for the oxidation of ternary iminodiacetato-chromium(III) complexes by periodate;Chemistry Central Journal;2009-02-04
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