JOURNAL ARTICLE

Liquid–crystal phase diagrams of binary mixtures of hard spherocylinders

Giorgio CinacchiL. MederosEnrique Velasco

Year: 2004 Journal:   The Journal of Chemical Physics Vol: 121 (8)Pages: 3854-3863   Publisher: American Institute of Physics

Abstract

We have built the liquid crystal phase diagram of several binary mixtures of freely rotating hard spherocylinders employing a second-order virial density functional theory with Parsons scaling, suitably generalized to deal with mixtures and smectic phases. The components have the same diameter and aspect ratio of moderate value, typical of many mesogens. Attention has been paid to smectic–smectic demixing and the types of arrangement that rods can adopt in layered phases. Results are shown to depend on the aspect ratio of the individual components and on the ratio of their lengths. Smectic phases are seen not to easily mix together at sufficiently high pressures. Layered phases where the longer rods are the majority component have a smectic-A structure. In the opposite case, a smectic-A2 phase is obtained where the shorter particles populate the layers and the longer ones prefer to stay parallel to the latter in the interlayer region.

Keywords:
Phase diagram Liquid crystal Materials science Rod Phase (matter) Binary number Aspect ratio (aeronautics) Component (thermodynamics) Scaling Condensed matter physics Virial coefficient Crystal (programming language) Scaling law Thermodynamics Chemistry Physics Mathematics Geometry Composite material Organic chemistry

Metrics

65
Cited By
3.12
FWCI (Field Weighted Citation Impact)
45
Refs
0.91
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Liquid Crystal Research Advancements
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Material Dynamics and Properties
Physical Sciences →  Materials Science →  Materials Chemistry
Surfactants and Colloidal Systems
Physical Sciences →  Chemistry →  Organic Chemistry

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