Microscopic study of chiral interactions in langmuir monolayer: monolayersof N-palmitoyl aspartic acid and N-stearoyl serine methyl ester

Citation
N. Nandi et D. Vollhardt, Microscopic study of chiral interactions in langmuir monolayer: monolayersof N-palmitoyl aspartic acid and N-stearoyl serine methyl ester, COLL SURF A, 183, 2001, pp. 67-83
Citations number
40
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS
ISSN journal
09277757 → ACNP
Volume
183
Year of publication
2001
Pages
67 - 83
Database
ISI
SICI code
0927-7757(20010715)183:<67:MSOCII>2.0.ZU;2-9
Abstract
In the present paper, we theoretically investigate the effect of chiral int eraction on the morphology of the domain in the condensed phase of amino ac id amphiphiles like N-palmitoyl aspartic acid and N-stearoyl serine methyl ester. We derived relations to calculate the intermolecular potential of a pair of chiral molecules, which is dependent on the intermolecular separati on and the mutual orientation of the molecules. The calculation is carried out based on an effective pair potential description of the groups attached to the chiral center. It is observed that the intermolecular interaction i s most favorable at a twist between the azimuthal orientations of the same type of enantiomeric molecules and the energy difference between the twiste d arrangement and the parallel arrangement (of neighboring molecules) is of the same order as the intermolecular hydrogen bond energy of the correspon ding amino acid head groups. Thus, the observed curvature of the domain sha pe of amino acid amphiphiles is suggested to be due to the twist at the con densed phase/fluid interface where the interresidue (amino acid) hydrogen b ond cycle is not as regular as within the condensed phase. Secondly, we als o calculated the interaction energy of an external molecule with all molecu les within a circular domain, having the same azimuthal orientation. It is observed that the interaction energy is rather anisotropic for enantiomers in the compressed state (smaller intermolecular separation). The interactio n energy has a symmetric profile around the domain composed of a pair of mi rror image isomers. Thus, the excess free energy at the condensed phase/flu id interface could be anisotropic for domains where the molecules have para llel arrangement throughout the lattice and this effect may act in concert with the intrinsic tendency to have an intermolecular twist due to chiralit y. The possibility of the relationship between the molecular twist and the handedness of the curvature of the domain is also discussed. (C) 2001 Elsev ier Science B.V. All rights reserved.