Effect of elastic constants of liquid crystals in their electro-optical properties

被引:0
|
作者
Parang, Z. [1 ]
Ghaffary, T. [1 ]
Gharahbeigi, M. M. [1 ]
机构
[1] Islamic Azad Univ, Dept Sci, Shiraz Branch, Shiraz, Iran
关键词
Liquid crystals; elastic constants; electro-optical properties; HARD GAUSSIAN OVERLAP; EQUATION; MOLECULES; FLUIDS;
D O I
10.1142/S0219887817501638
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Recently following the success of the density functional theory (DFT) in obtaining the structure and thermodynamics of homogeneous and inhomogeneous classical systems such as simple fluids, dipolar fluid and binary hard spheres, this theory was also applied to obtain the density profile of a molecular fluid in between hard planar walls by Kalpaxis and Rickayzen. In the theory of molecular fluids, the direct correlation function (DCF) can be used to calculate the equation of state, free energy, phase transition, elastic constants, etc. It is well known that the hard core molecular models play an important role in understanding complex liquids such as liquid crystals. In this paper, a classical fluid of nonspherical molecules is studied. The required homogeneous (DCF) is obtained by solving Orenstein-Zernike (OZ) integral equation numerically. Some of the molecules in the liquid crystals have a sphere shape and this kind of molecular fluid is considered here. The DCF sphere of the molecular fluid is calculated and it will be shown that the results are in good agreement with the pervious works and the results of computer simulation. Finally the electro-optical properties of ellipsoid liquid crystal using DCF of these molecules are calculated.
引用
收藏
页数:21
相关论文
共 50 条
  • [31] Effect of the magnetic nanoparticle concentration on the electro-optical properties of the polymer-dispersed liquid crystals
    Meng, Xiangshen
    Li, Jian
    Lin, Yueqiang
    Liu, Xiaodong
    Zhao, Jianwei
    Li, Guoqing
    Li, Decai
    He, Zhenghong
    LIQUID CRYSTALS, 2022, 49 (12) : 1612 - 1622
  • [32] DFT investigation on the effect of asymmetry on electro-optical properties of bent-core liquid crystals
    Kushwaha, Yadupati
    Yadava, Umesh
    PHASE TRANSITIONS, 2025, 98 (01) : 55 - 71
  • [33] Optical and electro-optical properties of ZnMgSe single crystals
    Puzikov, VM
    Zagoruiko, YA
    Fedorenko, OA
    Kovalenko, NO
    CRYSTALLOGRAPHY REPORTS, 2004, 49 (02) : 215 - 216
  • [34] Optical and electro-optical properties of ZnMgSe single crystals
    V. M. Puzikov
    Yu. A. Zagoruiko
    O. A. Fedorenko
    N. O. Kovalenko
    Crystallography Reports, 2004, 49 : 215 - 216
  • [35] ELECTRO-OPTICAL AND MAGNETO-OPTICAL PROPERTIES OF LIQUID-CRYSTALS - BLINOV,LM
    HESS, LD
    IEEE JOURNAL OF QUANTUM ELECTRONICS, 1984, 20 (11) : 1294 - 1294
  • [36] Optical switches using electro-optical effects in liquid crystals
    Semenova, Y
    Dovgalets, SM
    Panarin, Y
    Farrell, G
    OPTO-IRELAND 2002: OPTICS AND PHOTONICS TECHNOLOGIES AND APPLICATIONS, PTS 1 AND 2, 2003, 4876 : 249 - 259
  • [37] Effect of Photopolymerization Kinetics of Acrylate/Liquid Crystal Syrups on Electro-optical Properties of Polymer Dispersed Liquid Crystals
    Ni, Ming-li
    Peng, Hai-yan
    Bi, Shu-guang
    Liao, Yong-gui
    Xie, Xiao-lin
    ACTA POLYMERICA SINICA, 2014, (08) : 1078 - 1083
  • [38] Electro-optical effects in liquid crystals with dielectric dispersion
    Lavrentovich, Oleg D.
    Wonderly, Hugh A.
    Gu, Mingxia
    Shiyanovskii, Sergij V.
    LIQUID CRYSTAL XII, 2008, 7050
  • [39] Influence of modified detonation nanodiamonds on electro-optical properties of nematic liquid crystals
    Vashkevich, Vera
    Lapanik, Valeri
    Minko, Anatoly
    3RD INTERNATIONAL SCHOOL AND CONFERENCE ON OPTOELECTRONICS, PHOTONICS, ENGINEERING AND NANOSTRUCTURES (SAINT PETERSBURG OPEN 2016), 2016, 741
  • [40] Polymer Dispersed Liquid Crystals doped with nanoparticles: electric and electro-optical properties
    Manaila-Maximean, Doina
    Ganea, Paul
    Loiko, Valery A.
    Konkolovich, Alexander, V
    Circu, Viorel
    Danila, Octavian
    Barar, Ana
    ADVANCED TOPICS IN OPTOELECTRONICS, MICROELECTRONICS AND NANOTECHNOLOGIES X, 2020, 11718