화학공학소재연구정보센터
Langmuir, Vol.24, No.18, 10196-10203, 2008
Supramolecular architecture in Langmuir and Lanigmuir-Blodgett films incorporating a chiral azobenzene
This article describes the synthesis and fabrication of Langumuir and Langmuir-Blodgett (LB) films incorporating a chiral azobenzene derivative, namely, (S)-4-sec-butytoxy-4'-[5 ''-(methyloxycarbonyl)pentyl-1 ''-oxy]azobenzene, abbreviated as AZO-C4(S). Appropriate conditions for the fabrication of monolayers of AZO-C4(S) at the air-water interface have been established, and the resulting Langmuir films have been characterized by a combination of surface pressure and surface potential versus area per molecule isotherms, Brewster angle microscopy, and UV-vis reflection spectroscopy. The results indicate the formation of an ordered trilayer at the air-water interface with UV-vis reflection spectroscopy showing a new supramolecular architecture for multilayered films as well as the formation of J aggregates. Films were transferred onto solid substrates, with AFM revealing well-ordered multilayered films without 3D defects. Infrared and UV-vis absorption spectroscopy indicate that the supramolecular architecture may be favored by the formation of H bonds between acid groups in neighboring layers and pi-pi intermolecular interactions. Circular dichroism spectra reveal chiro-optical activity in multilayered LB films.