4.7 Article

Direct Measurement of the Local Glass Transition in Self-Assembled Copolymers with Nanometer Resolution

Journal

ACS CENTRAL SCIENCE
Volume 4, Issue 4, Pages 504-511

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acscentsci.8b00043

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Funding

  1. National Science Foundation (NSF) Materials Research Science and Engineering Center Program through the Princeton Center for Complex Materials [DMR-1420541]
  2. NSF
  3. AFOSR through a PECASE Award [FA9550-12-1-0223]

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Nanoscale compositional heterogeneity in block copolymers can impart synergistic property combinations, such as stiffness and toughness. However, until now, there has been no experimental method to locally probe the dynamics at a specific location within these structured materials. Here, this was achieved by incorporating pyrene-bearing monomers at specific locations along the polymer chain, allowing the labeled monomers' local environment to be interrogated via fluorescence. In lamellarforming poly(butyl methacrylate-b-methyl methacrylate) diblock copolymers, a strong gradient in glass transition temperature, T-g, of the higher-T-g block, 42 K over 4 nm, was mapped with nanometer resolution. These measurements also revealed a strongly asymmetric influence of the domain interface on T-g, with a much smaller dynamic gradient being observed for the lower-T-g block.

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