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PGSE NMR diffusion overhauser studies on [Ru(Cp*)(eta6-arene)][PF6], plus a variety of transition-metal, inorganic, and organic salts: an overview of ion pairing in dichloromethane
Authors:Moreno Aitor  Pregosin Paul S  Veiros Luis F  Albinati Alberto  Rizzato Silvia
Institution:1. Laboratory of Inorganic Chemistry, ETHZ, H?nggerberg 8093 Zürich, Switzerland, Fax: (+41)?44‐633‐10‐71;2. Centro de Química Estrutural, Complexo I, Instituto Superior Técnico, Av. Rovisco Pais 1, 1049‐001 Lisbon, Portugal, Fax: (+351)?21‐846‐44‐55;3. Department of Structural Chemistry and School of Pharmacy, University of Milan, 20133 Milan, Italy, Fax: (+39)?02‐5031‐4454
Abstract:PGSE diffusion, 19F, 1H HOESY and 13C NMR studies for a series of Ru(Cp*)(eta6-arene)]PF6] (1) salts are presented. The solid-state structure of Ru(Cp*)(eta6-fluorobenzene)]PF6] (1 c) is reported. The extent of the ion pairing and the relative positions of the ions are shown to depend on the arene. For the solvent dichloromethane, new and literature PGSE data for PF6(-) salts of transition-metal, inorganic, and organic salts are compared. Taken together, these new results show that the charge distribution and the ability of the anion to approach the positively charged positions (steric effects due to molecular shape) are the determining factors in deciding the amount of ion pairing. DFT calculations of the charges in four salts of type 1, as well as in a variety of other salts, using a natural population analysis (NPA), support this view. This represents the first attempt, using experimental data, to understand, correlate, and partially explain the various degrees of ion pairing in a widely different collection of salts.
Keywords:anions  cations  density functional calculations  ion pairs  NMR spectroscopy
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