Title of article :
The Arrangement of First- and Second-Shell Water Molecules in Trivalent Aluminum Complexes: Results from Density Functional Theory and Structural Crystallography
Author/Authors :
Bock، Charles W. نويسنده , , Markham، George D. نويسنده , , Katz، Amy K. نويسنده , , Glusker، Jenny P. نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
-1537
From page :
1538
To page :
0
Abstract :
The structural and energetic features of a variety of gas-phase aluminum ion hydrates containing up to 18 water molecules have been studied computationally using density functional theory. Comparisons are made with experimental data from neutron diffraction studies of aluminum-containing crystal structures listed in the Cambridge Structural Database. Computational studies indicate that the hexahydrated structure AIO (with symmetry T/i), in which all six water molecules are located in the innermost coordination shell, is lower in energy than that of AIOH2O], where only five water molecules are in the inner shell and one water molecule is in the second shell. The analogous complex with four water molecules in the inner shell and two in the outer shell undergoes spontaneous proton transfer during the optimization to give {AKIOHOHHsO, which is lower in energy than AIO; this finding of Hs0 is consistent with the acidity of concentrated Al solutions. Since, however, AIOje is detected in solutions of Al additional water molecules are presumed to stabilize the hexa-aquo AP cation. Three models of a trivalent aluminum ion complex surrounded by a total of 18 water molecules arranged in a first shell containing 6 water molecules and a second shell of 12 water molecules are discussed. We find that a model with Se symmetry for which the AIO unit remains essentially octahedral and participates in an integrated hydrogen bonded network with the 12 outer-shell water molecules is lowest in energy. Interactions between the 12 secondshell water molecules and the trivalent aluminum ion in AKHgO do not appear to be sufficiently strong to orient the dipole moments of these second-shell water molecules toward the Al ion.
Keywords :
Phthalocyanine complexes , Iron complexes , Oxo-bridged complexes
Journal title :
INORGANIC CHEMISTRY
Serial Year :
2003
Journal title :
INORGANIC CHEMISTRY
Record number :
66282
Link To Document :
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