A Molecular Theory of the Nematic-Nematic Phase Transitions in Mesogenic Dimers
arXiv:1510.01265 · doi:10.1039/C5SM02505B
Abstract
We present a simplified molecular model of mesogenic dimers consisting of two identical uniaxial mesogenic cores separated by a fixed-length spacer and allowed to assume only two, statistically equivalent, conformations which are non-planar and of opposite handedness. In the mean-field approximation, with additive interactions among the mesogenic cores, the model yields up to three positionally disordered phases, one isotropic and two nematic. The low temperature nematic phase () has a local two-fold symmetry axis which is also a direction of molecular polar ordering and is tightly twisted about a macroscopic phase axis. The onset of polar ordering generates spontaneous chiral symmetry breaking, manifested primarily by the twisting of the polar director and the formation of chiral domains of opposite handedness. Within these domains the statistical balance between the two enantiomer conformations is shifted and the principal axes of the ordering tensors of the molecular segments twist at constant tilt angles with the helix axis. Key experimental results on the phase of liquid crystalline dimers are discussed in the light of the theoretical predictions of the model, which are also contrasted with the predictions of the twist-bend nematic model.
32 pages, 6 figures
References in corpus (9)
- Nematic twist-bend phase with nanoscale modulation of molecular orientation
- A Twist-Bend Chiral Helix of 8nm Pitch in a Nematic Liquid Crystal of Achiral Molecular Dimers
- Statistical mechanics of bend flexoelectricity and the twist-bend phase in bent-core liquid crystals
- Electrooptic response of chiral nematic with oblique helicoidal director
- Twist-bend nematic liquid crystals in high magnetic fields
- Elastic continuum theory: Fully understanding of the twist-bend nematic phases
- Extending the Maier-Saupe theory to cybotactic nematics
- Phase ordering of zig-zag and bow-shaped hard needles in two dimensions
- Twisted quasiperiodic textures of biaxial nematics
Cited by in corpus (13)
- Molecular organization in the twist-bend nematic phase by resonant X-ray scattering at the Se K-edge and by SAXS, WAXS and GIXRD
- Nematic twist--bend phase in an external field
- The Twist Bend Nematic: A Case of Mistaken Identity
- Twist-bend nematic phases of bent-shaped biaxial molecules
- Uniform distortions and generalized elasticity of liquid crystals
- Atomistic simulations of nematic phases formed by cyano-biphenyl dimers
- Probing Molecular Ordering in the Nematic Phases of para-Linked Bimesogen Dimers through NMR Studies of Flexible Prochiral Solutes
- Second harmonic light scattering induced by defects in the twist-bend nematic phase of liquid crystal dimers
- Liquid Crystal Distortions Revealed by an Octupolar Tensor
- Polar molecular ordering in the Nx phase of bimesogens and enantiotopic discrimination in the NMR spectra of rigid prochiral solutes
- Dipole-dipole correlations in the nematic phases of symmetric cyanobiphenyl dimers and their binary mixtures with 5CB
- The interplay between spatial and heliconical bond order in twist-bend nematic materials
- 'Setting things straight' by twisting and bending?