Self-organisation of semi-flexible rod-like particles

Publication date

2017-12-28

Authors

De Braaf, Bart
Oshima Menegon, Mariana
Paquay, Stefan
van der Schoot, PaulISNI 0000000389454246

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

We report on a comprehensive computer simulation study of the liquid-crystal phase behaviour of purely repulsive, semi-flexible rod-like particles. For the four aspect ratios we consider, the particles form five distinct phases depending on their packing fraction and bending flexibility: the isotropic, nematic, smectic A, smectic B, and crystal phase. Upon increasing the particle bending flexibility, the various phase transitions shift to larger packing fractions. Increasing the aspect ratio achieves the opposite effect. We find two different ways in which the layer thickness of the particles in the smectic A phase may respond to an increase in concentration. The layer thickness may either decrease or increase depending on the aspect ratio and flexibility. For the smectic B and the crystalline phases, increasing the concentration always decreases the layer thickness. Finally, we find that the layer spacing jumps to a larger value on transitioning from the smectic A phase to the smectic B phase.

Keywords

Liquid crystals, Phase transitions, Heavy, Computer simulation, Statistical mechanics models, Taverne, General Physics and Astronomy, Physical and Theoretical Chemistry

Citation

De Braaf, B, Oshima Menegon, M, Paquay, S & Van Der Schoot, P 2017, 'Self-organisation of semi-flexible rod-like particles', Journal of Chemical Physics, vol. 147, no. 24, 244901. https://doi.org/10.1063/1.5000228