Microscopic modelling of nematic elastic constants beyond Straley theory.

Soft Matter

Department of Chemical Sciences, University of Padova, via Marzolo 1, 35131 Padova, Italy.

Published: January 2022

AI Article Synopsis

  • Recent studies on non-rod-like nematic structures show they have unique elastic properties that challenge traditional theories.
  • A theoretical and numerical framework has been developed to calculate Frank elastic constants, focusing on how molecular shape interacts with deformation modes using a non-local distribution function.
  • By comparing straight and bent rod models, the research highlights how different molecular conformations affect elastic constants and introduces new order parameters that influence deformation free energy.

Article Abstract

Recent findings on various classes of nematics, whose microscopic structure differs from the prototypical rod-like shape, evidence unusual elastic properties, which challenge existing theories. Here we develop a theoretical and numerical methodology for the calculation of Frank elastic constants, accounting for the coupling between the molecular shape and each specific deformation mode. This is done in the framework of Onsager-Straley's second-virial theory, using a non-local form of the orientational distribution function. The comparison between two benchmark systems, a straight and a bent rod, allows us to illustrate the distinct features of this approach, which include additional order parameters induced by the deformation and, related to this, an ideal contribution to the deformation free energy. Then, using a simple system that can be seen as a minimalist model of liquid crystal trimers, we discuss the impact of different molecular conformations on elastic constants.

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Source
http://dx.doi.org/10.1039/d1sm01502hDOI Listing

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