| Literature DB >> 25740100 |
Chiyoung Park1, Yunju La1, Tae Hyun An1, Hu Young Jeong2, Sebyung Kang3, Sang Hoon Joo4, Hyungju Ahn5, Tae Joo Shin5, Kyoung Taek Kim6.
Abstract
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.Entities:
Year: 2015 PMID: 25740100 DOI: 10.1038/ncomms7392
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919