Molecular dynamics simulations of liquid crystal molecules at an air-water interface

被引:0
|
作者
Yoneya, M
Aoki, KM
Tabe, Y
Yokoyama, H
机构
[1] Japan Sci & Technol Corp, ERATO, Yokoyama Nano Struct Liquid Crystal Project, Tsukuba, Ibaraki 3002635, Japan
[2] AIST, Nanotechnol Res Inst, Tsukuba, Ibaraki 3058568, Japan
来源
关键词
amphiphile; Langmuir monolayer; molecular simulation;
D O I
10.1080/15421400490437196
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Molecular dynamics simulations were done for terminally alkyl and alkoxy substituted azobenzene liquid crystal (LC) molecules at an air-water interface using realistic (LC and water) molecular models. The simulation result were compared with those of a corresponding amphiphilic modification, i.e. terminal omega-carboxyalkoxy substituted azobenzene. Comparison with a LC with a different mesogen core, phenylpyrimidine, was also made. The interaction energetics were found to be more or less similar both in the alkyl and alkoxy terminated azobenzene and its amphiphilic modification, i.e. cohesive energy dominated over adhesive energy. In contrast, a large difference was found between alkyl and alkoxy terminated azobenzene and phenylpyrimidine LCs; cohesive and adhesive energy contributions were competitive in the latter molecule.
引用
收藏
页码:2297 / 2305
页数:9
相关论文
共 50 条
  • [41] The molecular configuration of a DOPA/ST monolayer at the air-water interface: a molecular dynamics study
    Kong, Chui-Peng
    Peters, E. A. J. F.
    Zheng, Qing-Chuan
    de With, G.
    Zhang, Hong-Xing
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2014, 16 (20) : 9634 - 9642
  • [42] Molecular simulations of the transport of molecules across the liquid/vapor interface of water
    Garrett, BC
    Schenter, GK
    Morita, A
    CHEMICAL REVIEWS, 2006, 106 (04) : 1355 - 1374
  • [43] Chirality in molecular films at the air-water interface
    Benichou, Emmanuel
    Gassin-Martin, Gaelle
    Derouet, Arnaud
    Russier-Antoine, Isabelle
    Bachelier, Guillaume
    Jonin, Christian
    Lascoux, Noelle
    Liu, Minghua
    Brevet, Pierre-Fancois
    ORGANIC PHOTONIC MATERIALS AND DEVICES XIII, 2011, 7935
  • [44] First principles molecular dynamics studies of acid dissociation at the air-water interface
    Tobias, Douglas J.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2012, 243
  • [45] Molecular simulation of adsorption thermodynamics and dynamics behavior of GOs at air-water interface
    Gu, Shuyin
    Chen, Kai
    Jin, Yezhi
    Yang, Xiaoning
    MOLECULAR SIMULATION, 2021, 47 (15) : 1273 - 1281
  • [46] Behavior of β-Amyloid 1-16 at the Air-Water Interface at Varying pH by Nonlinear Spectroscopy and Molecular Dynamics Simulations
    Miller, Abigail E.
    Petersen, Poul B.
    Hollars, Christopher W.
    Saykally, Richard J.
    Heyda, Jan
    Jungwirth, Pavel
    JOURNAL OF PHYSICAL CHEMISTRY A, 2011, 115 (23): : 5873 - 5880
  • [47] Predicting problems caused by the air-water interface in cryo-electron microscopy: Insights from molecular dynamics simulations
    Sahoo, Abhilash
    Hanson, Sonya M.
    BIOPHYSICAL JOURNAL, 2024, 123 (03) : 133A - 134A
  • [48] Line tension and structure of smectic liquid-crystal multilayers at the air-water interface
    Zou, Lu
    Wang, Ji
    Basnet, Prem
    Mann, Elizabeth K.
    PHYSICAL REVIEW E, 2007, 76 (03):
  • [49] Crystal Perfection of Particle Monolayer at the Air-Water Interface
    Shinotsuka, Kei
    Kajita, Yasuhito
    Hongo, Koki
    Hatta, Yoshihisa
    LANGMUIR, 2015, 31 (42) : 11452 - 11457
  • [50] Ultrafast Reorientational Dynamics of Leucine at the Air-Water Interface
    Donovan, Michael A.
    Yimer, Yeneneh Y.
    Pfaendtner, Jim
    Backus, Ellen H. G.
    Bonn, Mischa
    Weidner, Tobias
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2016, 138 (16) : 5226 - 5229