Microphase Separation of Cyclic-Structured Block Copolymer Melts

ORAL

Abstract

Topological modification of block copolymer (BCP) conformations offers a promising approach for developing self-assembled periodic nanostructured materials with smaller domain sizes, which are essential for a range of technological applications. Cyclic polymers, with their inherently more compact conformations, present an effective strategy for achieving this miniaturization. In this work, through a combination of analytical theory and coarse-grained molecular dynamics simulations, we establish a relationship between different nonlinear topologies and the corresponding domain size of lamella-forming BCPs. Our investigations includes BCP architectures with one or two cyclic segments such as tadpoles, diblock and triblock 8-shaped polymers, and diblock non-concatenated and concatenated rings. We demonstrate that the primary reduction in lamellar domain size is driven by the more compact arrangement of monomers in the cyclic architectures, with an additional contribution from the non-concatenation of cyclic segments. This is corroborated by theoretical predictions for both domain size reduction and BCP conformations across different architectures.

*This work has been supported by the National Science Center, Poland (Grant Sonata Bis No. 2018/30/E/ST3/00428).

Publication: Macromolecules 2025, 58, 3, 1521–1536

Presenters

  • Jaroslaw Paturej

    • University of Silesia
    • Univ of Silesia

Authors

  • Andrzej Grzyb

    • University of Silesia
  • Aykut Erbas

    • UNAM, Bilkent University
  • Jaroslaw S Klos

    • A. Mickiewicz University
  • Micheal Lang

    • Leibniz Institute for Polymer Research
  • Jaroslaw Paturej

    • University of Silesia
    • Univ of Silesia