【24h】

Transparent cubic Fd3m mesoporous silica monoliths with highly controllable pore architectures

机译:具有高度可控孔结构的透明立方Fd3m介孔二氧化硅整料

获取原文
获取原文并翻译 | 示例
       

摘要

Ordered cubic Fd3m mesoporous silica monoliths (HOM-11) were fabricated by using lyotropic and microemulsion phases of block copolymers (EOm -POn-EOm) as templates. Aromatic and aliphatic hydrocarbon molecules were used in the formation of true microemulsion liquid crystal phases, in the expansion of pore sizes, and in the changes in the phase geometrical shape. Large cylinder-like pores in the range of 6 - 11 nm with uniform constrictions and bimodal mesopore sizes can be easily produced (within minutes) by adopting this simple and reproducible strategy. The degree of solubilization of the hydrocarbons crucially influenced the generation of the more open-pore systems with cylindrical cubic Fd3m channels. Our results also show that enlargement of pore sizes of cubic Fd3m monoliths was achieved with the use of a high concentration of copolymers in the composition phase domains, a high degree of swelling and a large size of PO - EO blocks (core - corona) of the copolymer templates. In addition, this synthetic approach is also efficient in designing cubic Fd3m silica monoliths with large-sized glass, thick-walled frameworks up to 30 nm thick and high mesopore/micropore volumes. Although XRD patterns show well-defined Bragg diffraction peaks indicative of highly ordered cubic Fd3m structures, TEM micrographs reveal that worm-like mesopore channels in large domains were observed with samples synthesized from copolymers with small EO - PO block ratios. This finding indicates that the molecular nature (i.e. the flexibility of the corona- and core-blocks) of the copolymer templates not only led to disordered pore channels but also reduced the ability to design more mesostructured phases.
机译:以嵌段共聚物(EOm -POn-EOm)的溶致相和微乳液相为模板,制备了有序的立方Fd3m介孔二氧化硅整料(HOM-11)。芳香族和脂肪族烃分子用于形成真正的微乳状液晶相,扩大孔径以及改变相几何形状。通过采用这种简单且可重复的策略,可以很容易地(在几分钟之内)产生6-11 nm范围内的大圆柱状孔,具有均匀的收缩和双峰中孔尺寸。碳氢化合物的溶解度严重影响具有圆柱形立方Fd3m通道的开孔系统的生成。我们的结果还表明,通过在组成相域中使用高浓度的共聚物,高溶胀度和大尺寸的PO-EO嵌段(核-电晕),可以实现立方Fd3m整体填料孔径的扩大。共聚物模板。此外,这种合成方法还可以有效地设计立方Fd3m二氧化硅整料,该整料具有大尺寸的玻璃,厚至30 nm的厚壁骨架以及高中孔/微孔体积。尽管X射线衍射图谱显示出清晰的布拉格衍射峰,表明立方Fd3m结构高度有序,但TEM显微照片显示,使用由低EO-PO嵌段比的共聚物合成的样品,在大范围内观察到蠕虫状的中孔通道。该发现表明,共聚物模板的分子性质(即,电晕和核心嵌段的柔性)不仅导致无序的孔通道,而且降低了设计更多的介孔相的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号