Habartová Alena, Roeselová Martina, Cwiklik Lukasz
Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic , Flemingovo nám. 2, 16610, Prague 6, Czech Republic.
J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic , v.v.i., Dolejškova 3, 18223 Prague 8, Czech Republic.
Langmuir. 2015 Oct 27;31(42):11508-15. doi: 10.1021/acs.langmuir.5b02854. Epub 2015 Oct 14.
Multicomponent Langmuir monolayers are important models of organic coatings of naturally occurring water-vapor interfaces such as the surfaces of oceans or aerosol particles. We investigated mixed monolayers comprised of palmitic acid, C15H31COOH (PA) and 1-bromoalkanes of different chain length (C5, C10, and C16) at the air-water interface employing classical molecular dynamics simulations. Different composition ratios and lateral compression of the monolayers were considered. The structural parameters, such as density profiles, and deuterium order parameter, evaluated as functions of composition and the lateral film packing, provide microscopic information about organization and dynamics of the mixed monolayers. Simulations demonstrate that stable and well mixed monolayers are formed by the mixtures of PA and BrC16H33 (BrCl6), whereas the two considered shorter bromoalkanes, BrC5H11 (BrC5) and BrC10H21 (BrC10), do not form stable films. This is in accord with earlier experimental studies. Under high lateral pressures, in PA/BrC10 mixed systems molecules of the bromoalkane readily flip in the monolayer and subsequently leave the film, while the molecules of the longer BrC16 are expelled from the PA film but no flipping occurs. These results suggest that the film collapse under pressure is preceded by squeezing-out of bromoalkanes from the PA monolayer.
多组分朗缪尔单分子层是自然存在的水汽界面(如海洋表面或气溶胶颗粒表面)有机涂层的重要模型。我们采用经典分子动力学模拟,研究了在气-水界面由棕榈酸(C15H31COOH,PA)和不同链长的1-溴代烷烃(C5、C10和C16)组成的混合单分子层。考虑了单分子层的不同组成比和横向压缩。作为组成和横向膜堆积函数评估的结构参数,如密度分布和氘序参数,提供了关于混合单分子层组织和动力学的微观信息。模拟表明,PA和BrC16H33(BrCl6)的混合物形成了稳定且混合良好的单分子层,而所考虑的两种较短的溴代烷烃BrC5H11(BrC5)和BrC10H21(BrC10)则不能形成稳定的膜。这与早期的实验研究一致。在高横向压力下,在PA/BrC10混合体系中,溴代烷烃分子很容易在单分子层中翻转并随后离开膜,而较长的BrC16分子则从PA膜中被挤出但不发生翻转。这些结果表明,在压力下单分子层的塌陷之前,溴代烷烃会从PA单分子层中被挤出。