A method of combined treatment for the evaluation of core excitation energies in molecules involving heavy atoms: application to CrF6, MoF6, and WF6
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Elsevier
Reference42 articles.
1. Molybdenum aquo ions in solution
2. A systematic x-ray absorption study of molybdenum complexes. The accuracy of structural information from extended x-ray absorption fine structure
3. Photoelectron spectra of transition-metal carbonyl complexes: comparison with the spectra of adsorbed CO
4. Hard and Soft Acids and Bases
5. Theoretical study of the electron affinities of MF6 and MF−6 (M=Cr, Mo, and W) using a model potential method
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1. Electron cross relaxation as a function of single relaxation contributions in double-core ionization energies and spin–orbit splitting of atoms from Ar to Ba. I. 1s−2p− double-core holes;International Journal of Quantum Chemistry;2007
2. Shell effects and homothetic expressions for electron relaxation and other corrections to 2p-core ionization energies and spin-orbit splitting for atoms from Cl to Ba;Topics in the Theory Of Chemical and Physical Systems;2007
3. Ansatz for the evaluation of the relativistic contributions to core ionization energies in complex molecules involving heavy atoms;International Journal of Quantum Chemistry;2005
4. Shell Effects in the Relaxation Energy of 2s-Core Ionization of Atoms from B through Xe;Israel Journal of Chemistry;2004-10
5. Core and Valence Electron Distributions in Heavy Elements by X-Ray and Electron Spectroscopy;Theoretical Chemistry and Physics of Heavy and Superheavy Elements;2003
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