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Mesoporous Polymer Frameworks from End-Reactive Bottlebrush Copolymers

  • SUNY Buffalo
  • Brookhaven National Laboratory

Research output: Contribution to journalArticlepeer-review

28 Scopus citations

Abstract

Reticulated nanoporous materials generated by versatile molecular framework approaches are limited to pore dimensions on the scale of the utilized rigid molecular building blocks (<5 nm). The inherent flexibility of linear polymers precludes their utilization as long framework connectors for the extension of this strategy to larger length scales. We report a method for the fabrication of mesoporous frameworks by using bottlebrush copolymers with reactive end blocks serving as rigid macromolecular interconnectors with directional reactivity. End-reactive bottlebrush copolymers with pendant alkene functionalities were synthesized by a combination of controlled radical polymerization and polymer modification protocols. Ru-catalyzed cross-metathesis cross-linking of bottlebrush copolymers with two reactive end blocks resulted in the formation of polymer frameworks where isolated cross-linked domains were interconnected with bottlebrush copolymer bridges. The resulting materials were characterized by a continuous network pore structure with average pore sizes of 9-50 nm, conveniently tunable by the length of the utilized bottlebrush copolymer building blocks. The materials fabrication strategy described in this work expands the length scale of molecular framework materials and provides access to mesoporous polymers with a molecularly tunable reticulated pore structure without the need for templating, sacrificial component etching, or supercritical fluid drying.

Original languageEnglish
Pages (from-to)8207-8214
Number of pages8
JournalACS Nano
Volume11
Issue number8
DOIs
StatePublished - Aug 22 2017

Keywords

  • bottlebrush copolymers
  • cross-linking
  • nanoporous materials
  • organic frameworks
  • polymer networks

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