Quantum-Chemical Analysis of the Electron Transfer Mechanism in Model System MgNbF7 + 12MgCl2 by the Method of Frontier Molecular Orbitals
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Publisher
Pleiades Publishing Ltd
Subject
Electrochemistry
Link
http://link.springer.com/content/pdf/10.1134/S1023193518090069.pdf
Reference17 articles.
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2. Kremenetsky, V.G. and Kremenetskaya, O.V., Quantum- chemical validation of the relative stability of complex species with different outer-sphere composition in the M3CrF6 + 18MCl systems (M = Na, K), Russ. J. Inorg. Chem., 2013, vol. 58, no. 12, p. 1523. doi https://doi.org/10.1134/S0036023614010070
3. Stulov, Yu.V., Kremenetsky, V.G., and Kuznetsov, S.A., Electrochemical and quantum-chemical studies of chromium(III,II) fluoride complexes in alkali chloride melts, Russ. J. Electrochem., 2014, vol. 50, no. 9, p. 815.
4. Fukui, K., Yonezawa, T., and Shingu, H., A molecular orbital theory of reactivity in aromatic hydrocarbons, J. Chem. Phys., 1952, vol. 20, no. 4, p. 722. doi https://doi.org/10.1063/1.1700523
5. Popova, A.V., Kremenetsky, V.G., and Kuznetsov, S.A., The effect of the second coordination sphere on electrochemistry of niobium fluoride complexes in alkali halide melts. I. Diffusion coefficients of Nb(V) and Nb(IV) complexes, J. Electrochem. Soc., 2014, vol. 161, no. 9, p. H447. doi https://doi.org/10.1149/2.0261409jes
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