Molecular Dynamics Simulation Studies of a Model System for Liquid Crystals Consisting of Rodlike Molecules in NPT Ensemble

Molecular dynamics simulation studies for thermotropic liquid crystalline systems conposed of rodlike molecules with 6 Lennard-Jones interaction sites wre performed in NPT ensemble. Within the range of temperature studied, the system exhibited isotropic and smectic phase. For the characterization of...

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Veröffentlicht in:Bulletin of the Korean Chemical Society 2000, Vol.21 (3), p.310-316
Hauptverfasser: 이창준, 심훈구, 김운춘, 이송희, 박형숙, Lee, Chang Jun, Sim, Hun Gu, Kim, Un Chun, Lee, Song Hui, Park, Hyeong Suk
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container_title Bulletin of the Korean Chemical Society
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creator 이창준
심훈구
김운춘
이송희
박형숙
Lee, Chang Jun
Sim, Hun Gu
Kim, Un Chun
Lee, Song Hui
Park, Hyeong Suk
description Molecular dynamics simulation studies for thermotropic liquid crystalline systems conposed of rodlike molecules with 6 Lennard-Jones interaction sites wre performed in NPT ensemble. Within the range of temperature studied, the system exhibited isotropic and smectic phase. For the characterization of the smectic phase, we examined the structure of the liquid crystalline phase via the radial distribution function, its longitudinal and transverse components to the director, and other orientational correlation function, its longitudinal and transverse components to the director, and other orientational correlation functions. In the smectic A phase, our results showed a large anisotropy in translational motion (i.e.,$D_⊥ >> D_∥$), and the decay of the collective orientational correlation function of rank two became slower than that of the single particle orientational correlation function of rank one. Comments on the spontaneous growth of orientational order directly from the isotropic phase are given.
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