Université de Pau & Pays Adour, CNRS, IPREM UMR 5254, 2 Avenue du Président Angot, Pau F-64053, France.
Chem Commun (Camb). 2018 Nov 20;54(93):13068-13071. doi: 10.1039/c8cc05333b.
A hierarchically structured platform was obtained from directed self-assembly of a poly(styrene)-b-poly(4-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 BCP self-assembly to form out-of-the-plane nano-cylinders, offering a film with an unprecedented triple structure, which could be used as a reactive platform. Indeed the surface nano-domains of VBC were exploited as reactive nano-patterns for site-specific chemical functionalization.
通过在呼吸图案(BF)模板化过程中聚(苯乙烯)-b-聚(4-乙烯基苄基氯)(PS-b-PVBC)嵌段共聚物(BCP)的定向自组装,获得了分层结构的平台。使用水/乙醇气氛的 BF 工艺给出了独特的双重孔隙率,其中六边形排列的微米级孔被较小的纳米级孔的次要群体包围。通过 BCP 自组装同时在孔之间引入了第三级结构,形成了离平面纳米圆柱,为薄膜提供了前所未有的三重结构,可作为反应平台。实际上,VBC 的表面纳米域被用作用于特定位置化学官能化的反应性纳米图案。