Can multi-biaxial mesogenic mixtures favour biaxial nematics? A computer simulation study.
نویسندگان
چکیده
Extending the range of existence of biaxial nematic phases is key to their use in applications. Here, we have investigated using extensive molecular dynamics (MD) simulations of a coarse-grained model the possible advantages of using mesogenic mixtures. We have studied the phase organisation of five thermotropic mixtures of biaxial Gay-Berne (GB) ellipsoidal particles having the same volume, but different shapes and interactions, with aspect ratios ranging from rod-like to disc-like and, choosing fractional compositions so as to model a Gaussian dispersity of shapes. The parameterisation is based on a previous GB model with biaxialities of opposite sign for steric and attractive interactions which was shown to exhibit a stable biaxial nematic phase. We found that mixing different biaxial GB particles has an overall stabilising effect on the biaxial nematic phase with respect to temperature, layering and, to some extent also demixing. The mixtures show a decrease of ordering transition temperatures, a widening of nematic temperature ranges, and the formation of smectic phases at lower temperatures.
منابع مشابه
Biaxial Discotic Gay-berne Mesogens and Biaxial Nematics
We investigate the thermotropic liquid crystal phases formed in a system of biaxial discotic mesogenic Gay-Berne particles with strong in-plane interactions when the attractive and repulsive biaxialities have the same or the opposite sign. We find that a biaxial nematic phase is obtained when the shape and well depth anisotropies have the same sign while we do not observe a columnar phase.
متن کاملDo thermotropic biaxial nematics exist? A Monte Carlo study of biaxial Gay–Berne particles
We have investigated with extensive Monte Carlo simulations in the isothermal isobaric ensemble a system of N = 8192 elongated attractive–repulsive biaxial Gay–Berne (GB) particles. We have found a uniaxial and biaxial nematic and a biaxial orthogonal smectic phase in this thermotropic model system.
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The simulation of systems of simple particles interacting through a suitable model potential allows the identification of the essential physical features (anisotropy and biaxiality, electrostatic moments etc.) responsible for a certain collective behaviour. Here attractive – repulsive models of the so called Gay-Berne type, that have proved capable of generating nematic, smectic and columnar li...
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We investigate the phase organisation of thermotropic biaxial Gay-Berne (GB) mesogens yielding a biaxial nematic (Nb) phase upon endowing them with a central point dipole. We study the effects of changing the strength and orientation of the dipole on the phase behaviour, and in particular we examine, using molecular dynamics (MD) simulations, the possibility of improving the stability of the Nb...
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عنوان ژورنال:
- Physical chemistry chemical physics : PCCP
دوره 19 3 شماره
صفحات -
تاریخ انتشار 2017