Thermodynamics of Complexation of Alkali Metal Cations by a Lower-Rim Calix[4]arene Amino Acid Derivative

被引:0
作者
Josip Požar
Tajana Preočanin
Leo Frkanec
Vladislav Tomišić
机构
[1] University of Zagreb,Laboratory of Physical Chemistry, Department of Chemistry, Faculty of Science
[2] Ruđer Bošković Institute,Laboratory of Supramolecular and Nucleoside Chemistry, Department of Organic Chemistry and Biochemistry
来源
Journal of Solution Chemistry | 2010年 / 39卷
关键词
Calixarenes; Complexation; Microcalorimetry; Thermodynamics; Solvation; Hydrogen bonds;
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摘要
Complexation of alkali metal cations with 5,11,17,23-tetra-tert-butyl-26,28,25,27-tetrakis(O-methyl-d-α-phenylglycylcarbonylmethoxy)calix[4]arene (L) in methanol and acetonitrile was studied by means of direct and competitive microcalorimetric titrations at 25 °C. The thermodynamic parameters of complexation reactions showed that all the reactions investigated were enthalpically controlled. In both solvents the reaction enthalpy was most favorable for Na+ binding with L leading to the highest affinity of the examined calix[4]arene derivative towards this cation. The solubilities (and consequently the solution Gibbs energies) of the ligand were determined, as were the corresponding solution enthalpies and entropies. No significant difference was observed between the solution thermodynamic quantities of L in the two solvents, whereas the transfer of complex species from methanol to acetonitrile was found to be quite favorable. The interactions of solvent molecules with the free and the complexed ligand were investigated by 1H NMR spectroscopy. It was concluded that in both cases inclusion of an acetonitrile molecule into the hydrophobic cavity of L occurred, which significantly affected the cation complexation in this solvent. The thermodynamic data were discussed regarding the structural properties of the ligand, the free and the complexed cations as well as the solvation abilities of the solvents examined. In this respect, the specific solvent-solute interactions and the intramolecular NH⋅⋅⋅O=C hydrogen bonds at the lower rim of L were particularly addressed.
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页码:835 / 848
页数:13
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  • [1] Creaven B.S.(2009)Coordination chemistry of calix[4]arene derivatives with lower rim functionalisation and their applications J. Coord. Chem. Rev. 253 893-962
  • [2] Donlon D.F.(1998)An overview on the solution thermodynamics of lower rim functionalised calixarene derivatives and metal cations. New derivatives containing amino and thioalkyl functional groups Pure Appl. Chem. 70 769-778
  • [3] McGinley A.F.(1998)Thermodynamics of calixarene chemistry Chem. Rev. 98 2495-2525
  • [4] Danil de Namor R.G.(2000)Calix[4]arene amino acid derivatives. Intra- and intermolecular hydrogen-bonded organisation in solution and the solid state Chem. Eur. J. 6 442-453
  • [5] Hutcherson F.J.(2003)Peptido- and glycocalixarenes: playing with hydrogen bonds around hydrophobic cavities Acc. Chem. Res. 36 246-254
  • [6] Sueros Velarde M.L.(2005)Hydrogen bonding and solvent effects on complexation of alkali metal cations by lower rim calix[4]arene tetra( J. Incl. Phenom. Macrocycl. Chem. 53 263-268
  • [7] Zapata-Ormachea L.E.(1969)-[ Anal. Chem. 41 1903-118
  • [8] Pulcha Salazar I.(1991)-acetyl- Biochem. Biophys. Methods 22 101-702
  • [9] Al Jammaz N.(1995)-phenylglycine methyl ester]) derivative J. Solution Chem. 24 685-1457
  • [10] Al Rawi A.F.(1995)Use of tris(hydroxymethyl)aminomethane as a comparison standard for thermometric titration calorimetry J. Org. Chem. 60 1454-6751