Directed assembly of high molecular weight block copolymers: Highly ordered line patterns of perpendicularly oriented lamellae with large periods

Eunhye Kim, Hyungju Ahn, Sungmin Park, Hoyeon Lee, Moongyu Lee, Sumi Lee, Taewoo Kim, Eun Ae Kwak, Jun Han Lee, Xie Lei, June Huh, Joona Bang, Byeongdu Lee, Du Yeol Ryu

    Research output: Contribution to journalArticlepeer-review

    122 Citations (Scopus)

    Abstract

    The directed assembly of block copolymer nanostructures with large periods exceeding 100 nm remains challenging because the translational ordering of long-chained block copolymer is hindered by its very low chain mobility. Using a solvent-vapor annealing process with a neutral solvent, which was sequentially combined with a thermal annealing process, we demonstrate the rapid evolution of a perpendicularly oriented lamellar morphology in high molecular weight block copolymer films on neutral substrate. The synergy with the topographically patterned substrate facilitated unidirectionally structural development of ultrahigh molecular weight block copolymer thin films - even for the structures with a large period of 200 nm - leading to perfectly guided, parallel, and highly ordered line-arrays of perpendicularly oriented lamellae in the trenched confinement. This breakthrough strategy, which is applicable to nanolithographic pattern transfer to target substrates, can be a simple and efficient route to satisfy the demand for block copolymer assemblies with larger feature sizes on hundreds of nanometers scale.

    Original languageEnglish
    Pages (from-to)1952-1960
    Number of pages9
    JournalACS nano
    Volume7
    Issue number3
    DOIs
    Publication statusPublished - 2013 Mar 26

    Keywords

    • block copolymer
    • exceeding 100 nm
    • high molecular weight
    • perpendicularly oriented lamellae
    • solvent-vapor annealing

    ASJC Scopus subject areas

    • General Materials Science
    • General Engineering
    • General Physics and Astronomy

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