Issue 3, 2011

DFT study on the mechanism for the substitution of F into Al(iii) complexes in aqueous solution

Abstract

The mechanisms for the substitution of an aqua ligand with F in monomeric Al complexes were studied with density functional theory (DFT). Typical mechanisms are modeled to determine the preferred substitution pathway according to the activation energy barriers. The present computational results are in favor of interchange associative (Ia) mechanism for the substitution of F into Al(H2O)63+, whereas interchange dissociative (Id) mechanism is preferred for the substitution into Al(H2O)5(OH)2+, which is in agreement with the previous experimental findings. This implies the mechanistic changeover from Ia to Id induced by the spectator hydroxyl ligand. Like the water-exchange reaction, the substitution rate is accelerated by OH ligand. The difference of the computational and experimental activation enthalpy values is interpreted as the DFT errors in energy and the deviation of transmission coefficient from unity.

Graphical abstract: DFT study on the mechanism for the substitution of F− into Al(iii) complexes in aqueous solution

Supplementary files

Article information

Article type
Paper
Submitted
03 Jun 2010
Accepted
23 Sep 2010
First published
30 Nov 2010

Dalton Trans., 2011,40, 567-572

DFT study on the mechanism for the substitution of F into Al(III) complexes in aqueous solution

X. Jin, Z. Qian, B. Lu and S. Bi, Dalton Trans., 2011, 40, 567 DOI: 10.1039/C0DT00594K

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