Key Laboratory of Mesosopic Chemistry, College of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.
J Colloid Interface Sci. 2011 Dec 15;364(2):594-604. doi: 10.1016/j.jcis.2011.08.061. Epub 2011 Aug 31.
In order to establish the hierarchical structure in multiple levels on mesoporous silica, this article reports a new strategy to prepare the monolith with the pore configuration in nanometer scale, micro-morphology in micrometer level and macroscopic shape in millimeter or larger grade. These hierarchical monoliths are synthesized in a weak acidic condition by using triblock copolymer P123, hydroxyl carboxylic acid and tetramethyl orthosilicate (TMOS), and the textural properties of the mesostructure can be facilely adjusted by simply controlling the synthesis condition without any additive. During the synthesis, the primary particles can be selectively synthesized as monodispersed sphere, noodle, prism, straight rods with different size or irregular bars, and their connection plus arrangement in 3D directions can be also regulated. Therefore, various textural properties of mesopore are able to be altered including pore size (5.5-10.6 nm), total pore volume (0.48-1.2 cm(3) g(-1)), micropore surface area (47-334 m(2) g(-1)), and pore shape (from 2D or 3D straight channel to plugged channel). Moreover, these monoliths exhibit a considerable mechanical strength; they are also applied in eliminating particulate matters and tobacco special nitrosamines (TSNA) in tobacco smoke, exhibiting various morphology-assisted functions.
为了在介孔硅材料中建立多层次的分级结构,本文提出了一种新策略,用于制备具有纳米级孔结构、微米级微形貌和毫米级或更大尺寸宏观形状的整体式材料。这些分级整体式材料是在弱酸性条件下,采用三嵌段共聚物 P123、羟基羧酸和正硅酸乙酯(TMOS)合成的,通过简单地控制合成条件,无需添加任何添加剂,就可以轻松调节介孔结构的织构性质。在合成过程中,可以有选择性地将初级粒子合成为单分散的球体、面条、棱柱、不同尺寸的直棒或不规则棒,并且可以调节它们在 3D 方向上的连接和排列。因此,可以改变各种介孔的织构性质,包括孔径(5.5-10.6nm)、总孔体积(0.48-1.2cm³g⁻¹)、微孔表面积(47-334m²g⁻¹)和孔形状(从 2D 或 3D 直通道到堵塞通道)。此外,这些整体式材料具有相当的机械强度;它们还应用于消除烟草烟雾中的颗粒物和烟草特有亚硝胺(TSNA),表现出各种形态辅助功能。