Enhanced sampling of cylindrical microphase separation via shell-averaged bond-orientational order parameter

ORAL

Abstract

The formation of a hexagonal phase from the disordered phase is one of the typical order-disorder transitions (ODT) observed in asymmetric diblock copolymer systems. In order to drive this transition in a particle-based simulation, we introduce a shell-based bond-orientational order parameter that selectively responds to the mesoscopic order of the hexagonal cylinder phase. From metadynamics simulations in a bond-free particle model system, the characteristic pathway involved with the underlying free energy surface is deduced for the disordered-to-hexagonal transition. It is shown consecutively that the transition pathway and the metastable state are reproduced in dissipative particle dynamics simulations for the corresponding transition in bulk asymmetric block copolymer melt system. These agreements suggest that efficient strategies for enhanced sampling with particle-based simulations of block copolymer systems can be devised using coarse-grained pictures of the mesoscopic order.

*This research was supported by the National Research Foundation of Korea(NRF) grant funded by the Korean Government through the Ministry of Science, ICT and Future Planning (MSIP) (NRF-2015R1A5A1036133, 2019R1A2C1085081)

Presenters

  • Min Young Ha

    • Seoul Natl Univ

Authors

  • Min Young Ha

    • Seoul Natl Univ
  • Bumjoon Seo

    • Seoul Natl Univ
  • Won Bo Lee

    • Seoul Natl Univ