Spin–orbit coupling in a model Hamiltonian for d–d excited states of Ni2+ ion aqueous solution
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference28 articles.
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1. Thermodynamic Modeling of Poorly Complexing Metals in Concentrated Electrolyte Solutions: An X-Ray Absorption and UV-Vis Spectroscopic Study of Ni(II) in the NiCl2-MgCl2-H2O System;PLOS ONE;2015-04-17
2. Spectroscopic effects resulting from interacting singlet and triplet excited states: vibronic structure involving the O–H stretching mode in d–d absorption bands of Ni(H2O)62+;Dalton Trans.;2014-10-03
3. An improved model electronic Hamiltonian for potential energy surfaces and spin−orbit couplings of low-lying d−d states of [Fe(bpy)3]2+;The Journal of Chemical Physics;2014-01-14
4. Three-Dimensional Reference Interaction Site Model Self-Consistent Field Study of the Electronic Structure of [Cr(H2O)6]3+ in Aqueous Solution;The Journal of Physical Chemistry A;2013-08-16
5. The stability of aqueous nickel(II) chloride complexes in hydrothermal solutions: Results of UV–Visible spectroscopic experiments;Geochimica et Cosmochimica Acta;2012-10
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