A coarse-grained model of ionic liquid crystals: the effect of stoichiometry on the stability of the ionic nematic phase

被引:15
|
作者
Saielli, Giacomo [1 ,2 ]
Satoh, Katsuhiko [3 ]
机构
[1] CNR Inst Membrane Technol, Unit Padova, Via Marzolo 1, I-35131 Padua, Italy
[2] Univ Padua, Dept Chem Sci, Via Marzolo 1, I-35131 Padua, Italy
[3] Osaka Sangyo Univ, Dept Chem, Osaka 5748530, Japan
关键词
PRACTICAL APPLICATIONS; FUNDAMENTAL PROPERTIES; MD SIMULATION; BEHAVIOR; GUANIDINIUM; TRANSITION; TRANSPORT; INSIGHTS; SYSTEMS; STATE;
D O I
10.1039/c9cp03296g
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We have investigated, by means of molecular dynamics simulations, the phase behaviour of mixtures of charged ellipsoidal Gay-Berne (GB) particles and spherical Lennard-Jones (LJ) particles, as a coarse-grained model of ionic liquid crystals (ILCs). The anisotropic GB particles represent cations usually found in ILCs, for example, pyridinium or bipyridinium salts, while the spherical LJ particles are taken as a model of anions like common halides, hexafluorophosphate and tetrafluoroborate. Here we have focused our attention on the effect of the stoichiometry of the system (that is, the GB : LJ ratio n : m in the salt formula [GB](n)[LJ](m)) on the stability and thermal range of the ionic liquid crystal phases formed, with special attention to the ionic nematic phase. To isolate the stoichiometry effect, a comparison of four different systems with GB : LJ ratios of 1 : 3, 1 : 2, 1 : 1 and 2 : 1 is made by keeping the packing fraction and the charge of the minor component fixed. Our results suggest a way to improve the stability of the ionic nematic phase by enhancing the anisotropic van der Waals interaction compared to the Coulomb interaction, and by increasing the proportion of anisotropic particles in the mixture.
引用
收藏
页码:20327 / 20337
页数:11
相关论文
共 50 条
  • [1] Coarse-grained simulations of ionic liquid materials: from monomeric ionic liquids to ionic liquid crystals and polymeric ionic liquids
    Wang, Yong-Lei
    Li, Bin
    Laaksonen, Aatto
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2021, 23 (35) : 19435 - 19456
  • [2] Coarse-Grained Simulations of Columnar Ionic Liquid Crystals: Comparison with Experiments
    Kolmangadi, Mohamed A.
    Wani, Yashraj M.
    Schoenhals, Andreas
    Nikoubashman, Arash
    JOURNAL OF PHYSICAL CHEMISTRY B, 2024, 128 (34): : 8215 - 8222
  • [3] Diffusion mechanisms in smectic ionic liquid crystals: insights from coarse-grained MD simulations
    Saielli, Giacomo
    Voth, Gregory A.
    Wang, Yanting
    SOFT MATTER, 2013, 9 (24) : 5716 - 5725
  • [4] Influence of ionic conditions on knotting in a coarse-grained model for DNA
    Wettermann, Sarah
    Datta, Ranajay
    Virnau, Peter
    FRONTIERS IN CHEMISTRY, 2023, 10
  • [5] Role of the Electrostatic Interactions in the Stabilization of Ionic Liquid Crystals: Insights from Coarse-Grained MD Simulations of an Imidazolium Model
    Saielli, Giacomo
    Wang, Yanting
    JOURNAL OF PHYSICAL CHEMISTRY B, 2016, 120 (34): : 9152 - 9160
  • [6] Transferable Coarse-Grained Models for Ionic Liquids
    Wang, Yanting
    Feng, Shulu
    Voth, Gregory A.
    JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2009, 5 (04) : 1091 - 1098
  • [7] Coarse-grained force field for ionic surfactants
    Shinoda, Wataru
    DeVane, Russell
    Klein, Michael L.
    SOFT MATTER, 2011, 7 (13) : 6178 - 6186
  • [8] Fused coarse-grained model of aromatic ionic liquids and their behaviour at electrodes
    Li, Bin
    Ma, Ke
    Wang, Yong-Lei
    Turesson, Martin
    Woodward, Clifford E.
    Forsman, Jan
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2016, 18 (11) : 8165 - 8173
  • [9] The Emergent Nematic Phase in Ionic Chromonic Liquid Crystals
    Sidky, Hythem
    Whitmer, Jonathan K.
    JOURNAL OF PHYSICAL CHEMISTRY B, 2017, 121 (27): : 6691 - 6698
  • [10] A Coarse-Grained Model Describing the Critical Micelle Concentration of Perfluoroalkyl Surfactants in Ionic Aqueous Phase
    Barraud, Eddy
    Dalmazzone, Christine
    Mouret, Aurelie
    De Bruin, Theodorus
    Creton, Benoit
    Pasquier, David
    Lachet, Veronique
    Nieto-Draghi, Carlos
    LANGMUIR, 2025, 41 (11) : 7272 - 7282