Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST Road, Ulsan 689-798, Korea.
UNIST Central Research Facilities, UNIST, Ulsan 689-798, Korea.
Nat Commun. 2015 Mar 5;6:6392. doi: 10.1038/ncomms7392.
Solution self-assembly of block copolymers into inverse bicontinuous cubic mesophases is a promising new approach for creating porous polymer films and monoliths with highly organized bicontinuous mesoporous networks. Here we report the direct self-assembly of block copolymers with branched hydrophilic blocks into large monoliths consisting of the inverse bicontinuous cubic structures of the block copolymer bilayer. We suggest a facile and scalable method of solution self-assembly by diffusion of water to the block copolymer solution, which results in the unperturbed formation of mesoporous monoliths with large-pore (>25 nm diameter) networks weaved in crystalline lattices. The surface functional groups of the internal large-pore networks are freely accessible for large guest molecules such as protein complexes of which the molecular weight exceeded 100 kDa. The internal double-diamond (Pn3m) networks of large pores within the mesoporous monoliths could be replicated to self-supporting three-dimensional skeletal structures of crystalline titania and mesoporous silica.
嵌段共聚物自组装成反连续立方介相是一种很有前途的方法,可以用来制备具有高度有序的连续介孔网络的多孔聚合物薄膜和整体材料。在这里,我们报道了具有支化亲水嵌段的嵌段共聚物直接自组装成大的整体材料,该整体材料由嵌段共聚物双层的反连续立方结构组成。我们提出了一种通过水向嵌段共聚物溶液扩散进行溶液自组装的简便且可扩展的方法,该方法可以形成大孔(>25nm 直径)网络的无扰介孔整体材料,这些网络编织在结晶晶格中。内部大孔网络的表面功能基团可以自由地与大客体分子(如分子量超过 100kDa 的蛋白质复合物)相互作用。介孔整体材料中大孔的内部分型双菱形(Pn3m)网络可以复制到结晶二氧化钛和介孔硅的自支撑三维骨架结构中。