Technical University of Berlin, Department of Chemistry, Straße des 17. Juni 124, 10623 Berlin, Germany.
Small. 2012 Jan 23;8(2):298-309. doi: 10.1002/smll.201101520. Epub 2011 Nov 18.
The synthesis and properties of a series of new structure-directing triblock copolymers with PEO-PB-PEO structure (PEO = poly(ethylene oxide) and PB = polybutadiene) and their application as superior pore-templates for the preparation of mesoporous titania coatings are reported. Starting from either TiCl4 or from preformed TiO2 nanocrystalline building blocks, mesoporous crystalline titanium oxide films with a significant degree of mesoscopic ordered pores are derived, and the pore size can be controlled by the molecular mass of the template polymer. Moreover, the triblock copolymers form stable micelles already at very low concentration, i.e., prior to solvent evaporation during the evaporation-induced self-assembly process (EISA). Consequently, the thickness of pore walls can be controlled independently of pore size by changing the polymer-to-precursor ratio. Thus, unprecedented control of wall thickness in the structure of mesoporous oxide coatings is achieved. In addition, the micelle formation of the new template polymers is sufficiently distinct from that of typical commercial PPO-PEO-PPO polymers (Pluronics; PPO = poly(propylene oxide)), so that a combination of both polymers facilitates bimodal porosity via dual micelle templating.
本文报道了一系列具有 PEO-PB-PEO 结构(PEO=聚环氧乙烷,PB=聚丁二烯)的新型结构导向三嵌段共聚物的合成和性质,以及它们作为介孔二氧化钛涂层的优异孔模板的应用。以 TiCl4 或预先形成的 TiO2 纳米晶结构单元为起始原料,可得到具有高度介观有序孔的介孔结晶氧化钛薄膜,并且可以通过模板聚合物的分子量来控制孔径。此外,三嵌段共聚物在非常低的浓度下即可形成稳定的胶束,即在蒸发诱导自组装过程(EISA)中溶剂蒸发之前。因此,通过改变聚合物与前体的比例,可以独立于孔径控制孔壁的厚度。因此,实现了对介孔氧化物涂层结构中壁厚度的空前控制。此外,新型模板聚合物的胶束形成与典型的商业 PPO-PEO-PPO 聚合物(Pluronics;PPO=聚环氧丙烷)的胶束形成明显不同,因此两种聚合物的组合可通过双重胶束模板化实现双模态孔隙率。