Geometrical arrangement of water molecules in copper–aquoion complex—Influence on shifts and relaxivities in nuclear magnetic resonance
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.459184
Reference23 articles.
1. Relaxation of solvent protons by paramagnetic ions and its dependence on magnetic field and chemical environment: implications for NMR imaging
2. Contact Shift Studies of Some Paramagnetic Hexaaquo Metal Ion Complexes
3. ESR and NMR in Aqueous and Methanol Solutions of Copper(II) Solvates. Temperature and Magnetic Field Dependence of Electron and Nuclear Spin Relaxation
4. Applicability of the Solomon-Bloembergen equation to the study of paramagnetic transition metal-water complexes. An ab initio SCF-MO study
5. Hyperfine interactions and relaxivities in divalent and trivalent aquoion systems
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1. Quantum Chemical Investigation of Hyperfine Coupling Constants on First Coordination Sphere Water Molecule of Gadolinium(III) Aqua Complexes;The Journal of Physical Chemistry A;2005-11-10
2. Hydrated copper and gold monovalent cations:Ab initiostudy;The Journal of Chemical Physics;2005-02-08
3. NMR RELAXATION IN SOLUTION OF PARAMAGNETIC COMPLEXES: RECENT THEORETICAL PROGRESS FOR S≥1;Advances in Inorganic Chemistry;2005
4. Ab Initio Study of the Structures, Energetics, and Spectra of Aquazinc(II);The Journal of Physical Chemistry;1996-01-01
5. Structures and energetics of Zn(NH3)2+n (n=4–6). Coordination number of Zn2+ by ammine;Chemical Physics Letters;1993-12
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