The effect of N-alkyl chain-length on water binding to the copper(II) coordination sphere in bis[N,N-dialkyl-L-alpha-alaninato]copper(II) complexes

Citation
V. Noethig-laslo et N. Paulic, The effect of N-alkyl chain-length on water binding to the copper(II) coordination sphere in bis[N,N-dialkyl-L-alpha-alaninato]copper(II) complexes, POLYHEDRON, 18(11), 1999, pp. 1609-1614
Citations number
19
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
POLYHEDRON
ISSN journal
02775387 → ACNP
Volume
18
Issue
11
Year of publication
1999
Pages
1609 - 1614
Database
ISI
SICI code
0277-5387(1999)18:11<1609:TEONCO>2.0.ZU;2-5
Abstract
The role of N-alkyl chain-length in binding or release of water molecules t o the copper(II) coordination sphere in bis[N,N-dialkyl-L-alpha-alaninato]c opper(II) complexes (N-alkyl: methyl-, ethyl-, propyl-) was studied by EPR and UV/VIS spectroscopies. Several hydrogen bond-making and non-hydrogen bo nd-making organic solvents with different capacities to dissolve water were used. In the alaninato complexes the amino-acid side-chains (-CH3) are too short to form intramolecular Van der Waals contacts. Thus, the effect of w ater binding to the copper(II) coordination sphere of the complex on the so lute-solvent interactions can be studied separately from the intramolecular conformational effects of the amino acid side-chains. Water bound at the c opper(II) ion in Cu(DMA)(2) was found to be essential for the stability of the molecule. In Cu(DEA)(2), apical water can easily exchange with water mo lecules from the solvent in both hydrogen bond-making and non-hydrogen bond -making solvents. Apical water in Cu(DPA)(2) can be exchanged with solvent molecules in non-hydrogen bond-making solvents like chloroform, while in th e hydrogen bond-making solvents like methanol, apical water is screened fro m the solvent by the N-propyl chains. (C) 1999 Elsevier Science Ltd. All ri ghts reserved.