Beijing National Laboratory for Molecular Sciences, Peking University, Beijing 100871, China.
Langmuir. 2011 Dec 6;27(23):14589-93. doi: 10.1021/la2034615. Epub 2011 Nov 7.
Highly ordered mesoporous ZnTiO(3) with crystalline walls was directly prepared by a sol-gel process combined with evaporation induced self-assembly in ethanol, using amphiphilic triblock copolymers as structure directing agents. The whole process is self-adjusting to organize the network-forming metal oxide species without additional acid or base. The mesoporous material is pure cubic-phase ZnTiO(3) and has large surface area (up to 134 m(2)/g), large pore volume (0.17 cm(3)/g), and narrow pore size distribution (3-4.5 nm). The optic behavior was systematically studied, which is very helpful to understand the mesoporous ZnTiO(3) material either in fundamental study or for potential applications in optics and catalysis. This work provides a "self-adjusting" approach to fabricate the mesoporous functional materials with diverse compositions: the diverse hydrolysis-condensation kinetics of various metal oxides is homogenized to yield stable multicomponent precursors. The development of such a simple, versatile, and reproducible method is important for applications in practice.
采用溶剂挥发诱导自组装和溶胶-凝胶相结合的方法,以两亲性三嵌段共聚物为模板剂,在乙醇体系中直接制备了具有规整孔道结构的介孔 ZnTiO(3)。整个过程无需外加酸碱,通过自调整来组织网络形成的金属氧化物物种。所得介孔材料为纯立方相 ZnTiO(3),具有较大的比表面积(高达 134 m(2)/g)、较大的孔容(0.17 cm(3)/g)和较窄的孔径分布(3-4.5nm)。系统地研究了介孔 ZnTiO(3)的光学性能,这对于理解介孔 ZnTiO(3)材料在基础研究或在光学和催化方面的潜在应用非常有帮助。该工作为制备具有不同组成的介孔功能材料提供了一种“自调整”的方法:各种金属氧化物的不同水解-缩合动力学被均匀化,从而得到稳定的多组分前体。这种简单、通用且可重复的方法的发展对于实际应用非常重要。