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Experimental an theoretical treatment of elementary ligand exchange reactions in aluminum complexes

机译:Experimental an theoretical treatment of elementary ligand exchange reactions in aluminum complexes

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摘要

Substitution of a hydroxide or fluoride ion for a water molecule in the inner-coordination sphere of Al(OH{sub}2){sub}6{sup}3+ considerably weakens bonds from aluminum to other water molecules that are also in the inner-coordination sphere. Thelabilizing effect of these substitutions on the rate of dissociation of Al-O bonds is a model for ligand-promoted dissolution of aluminum (hydr)oxide minerals. Here measured activation parameters for ligand exchange are compared with ab initiocalculations of the energetics for comparable reactions. Because solvent exchange is an elementary reaction, it is particularly well-suited for such comparisons. The calculations indicate that substitution of hydroxide or fluoride ion into theinner-coordination sphere greatly reduces the energy required to remove a water molecule. The calculated and measured activation energies, however, differ significantly. A reasonable interpretation is that interactions between hydration waters andsecond-sphere water molecules, which are usually partly or fully excluded from the calculations, contribute to the exchange mechanism.

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