Incorporating particle flexibility in a density functional description of nematics and cholesterics
arXiv:1801.10601 · doi:10.1080/00268976.2018.1464226
Abstract
We describe a general implementation of the Fynewever-Yethiraj density functional theory (DFT) for the investigation of nematic and cholesteric self-assembly in arbitrary solutions of semi-flexible polymers. The basic assumptions of the theory are discussed in the context of other generalised Onsager descriptions for flexible polyatomic systems. The location of the isotropic-to-nematic phase transition is found to be in good agreement with molecular simulations for elongated chains up to relatively high polymer flexibilities, although the predictions of the theory in the nematic regime lead to gradual underestimations of order parameters with decreasing particle stiffness. This shortcoming is attributed to increasing overestimations of the molecular conformational entropy in higher-density phases, which may not be easily addressed in the formalism of DFT for realistic particle models. Practical consequences of these limitations are illustrated through the application of DFT to systems of near-persistence-length DNA duplexes, whose cholesteric behaviour is found to be strongly contingent on their detailed accessible conformational space in concentrated solutions.
References in corpus (10)
- Introducing Improved Structural Properties and Salt Dependence into a Coarse-Grained Model of DNA
- Molecular engineering of chiral colloidal liquid crystals using DNA origami
- Plectoneme tip bubbles: Coupled denaturation and writhing in supercoiled DNA
- Cholesterics of colloidal helices: Predicting the macroscopic pitch from the particle shape and thermodynamic state
- Anomalous fluctuations of nematic order in solutions of semiflexible polymers
- DNA elasticity from coarse-grained simulations: the effect of groove asymmetry
- Left or right cholesterics? A matter of helix handedness and curliness
- Spontaneous sense inversion in helical mesophases
- Perturbative density functional methods for cholesteric liquid crystals
- Hierarchical bounding structures for efficient virial computations: Towards a realistic molecular description of cholesterics
Cited by in corpus (4)
- Chiral shape fluctuations and the origin of chirality in cholesteric phases of DNA origamis
- Orientational wetting and topological transitions in confined solutions of semi-flexible polymers
- The smectic phase in semiflexible polymer materials: A large scale Molecular Dynamics study
- Chirality transfer in lyotropic twist-bend nematics