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Galvanic-Replacement-Assisted Surface-Initiated Atom Transfer Radical Polymerization for Functional Polymer Brush Engineering.

Xiaodong YinDaheng WuHaoyong YangJianing WangXiaoxuan ZhangHe LiTianyue ZhengLiping WangTao Zhang
Published in: ACS macro letters (2022)
Here we present a facile and robust strategy, namely, galvanic-replacement-assisted surface-initiated Cu(0)-mediated atom transfer radical polymerization (gr-SI-Cu 0 ATRP, or gr-SI-Cu 0 CRP) for polymer brush engineering under ambient conditions. In gr-SI-Cu 0 ATRP, highly active and nanostructured Cu(0) surfaces are obtained by a simple galvanic replacement on zinc/aluminum surfaces in dilute Cu 2+ solution. Polymer brush growth rate is extremely high (up to ∼904 nm in 30 min polymerization); meanwhile, both nano Cu(0) surfaces and Cu 2+ solution can be reused multiple times without losing grafting efficiency. We also demonstrate that the gr-SI-Cu 0 ATRP is advantageous for polymer brush engineering on arbitrary substrates, including flexible (polyethylene terephthalate), curved (polycarbonate), and porous (anodic aluminum oxide), and endow the substrates with various functionalities, for example, anti-icing, antifogging, and ion selectivity.
Keyphrases
  • metal organic framework
  • aqueous solution
  • room temperature
  • biofilm formation
  • escherichia coli
  • molecular dynamics
  • quantum dots
  • reduced graphene oxide