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Article Dans Une Revue Chemical Communications Année : 2018

Reactive Nanopattern in a Triple Structured Bio-Inspired Honeycomb Film

Résumé

A hierarchically structured platform was obtained from spontaneous self-assembly of a poly(styrene)-b-poly(vinylbenzylchloride) (PS-b-PVBC) block copolymer (BCP) during breath figure (BF) templating. The BF process using a water/ethanol atmosphere gave a unique double porosity in which hexagonally arranged micron-sized pores were encircled by a secondary population of smaller, nano-sized pores. A third level of structuration was simultaneously introduced between the pores by directed BCP self-assembly to form out-of-the-plane nano-cylinders, offering very rapid bottom-up access to a film with unprecedented triple structure which could be used as a reactive platform for introducing further surface functionality. The surface nano-domains of VBC were exploited as reactive nano-patterns for site-specific chemical functionalization by firstly substituting the exposed chlorine moiety with azide, then “clicking” an alkyne by copper (I) catalyzed azide-alkyne Huisgen cycloaddition (CuAAC). Successful chemical modification was verified by NMR spectroscopy, FTIR spectroscopy, and XPS, with retention of the micro- and nanostructuration confirmed by SEM and AFM respectively. Protonation of the cyclotriazole surface groups triggered a switch in macroscopic behavior from a Cassie-Baxter state to a Wenzel state, highlighting the possibility of producing responsive surfaces with hierarchical structure.
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Dates et versions

hal-01834678 , version 1 (10-07-2018)

Identifiants

Citer

Pierre Marcasuzaa, Pearson Samuel, Karell Bosson, Laurence Pessoni, Jean-Charles Dupin, et al.. Reactive Nanopattern in a Triple Structured Bio-Inspired Honeycomb Film. Chemical Communications, 2018, 93, pp.13068-13071. ⟨10.1039/c8cc05333b⟩. ⟨hal-01834678⟩
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