C-13 magnetic relaxation rates and H-1 and C-13 paramagnetic shifts of Co(II) complex of dopamine
Author:
Publisher
Elsevier BV
Subject
Inorganic Chemistry
Reference34 articles.
1. Nuclear magnetic resonance spectroscopy. Use of carbon-13 isotropic shifts as a probe of mechanisms of spin transmission in metal complexes. Some pyridine-type bases and triphenylphosphine complexed to nickel(II) and cobalt(II) acetylacetonates
2. Nuclear magnetic resonance in paramagnetic solution. Carbon-13 contact-shift studies of pyridine, aniline, and triphenylphosphine complexed with nickel(II) acetylacetonates
3. 1H, 13C, 14N, 19F Nuclear Magnetic Resonance Contact Shifts and Electron Spin Distribution in Aniline and Fluoroanilines – Ni(II) Acetylacetonate Complexes
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1. Determination of the composition and structure of paramagnetic coordination compounds in solutions from data on the spin relaxation of their nuclei;Journal of Structural Chemistry;1991
2. NMR and indo study of Ni(II) complexes of acetic and propionic acid;Journal of Molecular Liquids;1989-01
3. An n.m.r. study on displacements from platinum(II) complexes by dimethylsulphoxide;Transition Metal Chemistry;1987-08
4. 13C and 113Cd spin-lattice relaxation studies of ATP / CdCl2 and ATP / Cd(ClO4)2 systems in aqueous solutions;Chemical Physics;1986-11
5. Study of the interactions of CdCl2 and Cd(ClO4)2 with adenosine-5′-triphosphate in aqueous solution by 1H, 13C, 31P, 113Cd, NMR spectroscopy and X-ray diffraction tecnique;Chemical Physics;1985-03
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