Magnetic field alignment of coil-coil diblock copolymers and blends via intrinsic chain anisotropy

ORAL

Abstract

Magnetic fields can control alignment of self-assembled soft materials such as block copolymers provided there is a suitably large magnetic susceptibility anisotropy present in the system. Recent results have highlighted the existence of a non-trivial intrinsic anisotropy in coil-coil diblock copolymers, specifically in lamellar-forming PS-b-P4VP, which enables alignment at field strengths of a few tesla in systems lacking mesogenic components. Alignment is predicated on correlation in the orientation of end-end vectors implied by the localization of block junctions at the microdomain interface and is observed on cooling across the order-disorder transition in the presence of the field. For appropriate combinations of field strength and grain size, we can leverage intrinsic chain anisotropy to magnetically direct self-assembly of many non-mesogenic systems, including other coil-coil BCPs like PS-b-PDMS and PS-b-PMMA, blends of BCPs of disparate morphologies and MWs, and blends of BCPs with homopolymers. This is noteworthy as blends of PS-b-P4VP with PEO provide a route to form functional materials such as nanoporous films by dissolution of PEO, or aligned ion conduction materials. We survey these various systems using TEM and in-situ X-ray scattering to study the phase behavior and temperature-, time- and field- dependent dynamics of alignment.

Authors

  • Yekaterina Rokhlenko

    • Yale Univ.
  • Pawel Majewski

    • Univ. of Warsaw
    • University of Warsaw
  • Steven Larson

    • Univ. of Wisconsin-Madison
  • Kevin Yager

    • BNL
    • Brookhaven National Laboratory
  • Padma Gopalan

    • Univ. of Wisconsin-Madison
  • Apostolos Avgeropoulos

    • Department of Materials Science Engineering University of Ioannina University Campus
    • Univ. of Ioannina
  • Edwin Chan

    • NIST - Natl Inst of Stds & Tech
    • NIST
  • Chinedum Osuji

    • Yale
    • Yale University
    • Yale Univ
    • Yale Univ.