介孔材料
沸石
化学
硅酸铝
分子筛
阳离子聚合
化学工程
聚合物
介孔有机硅
分子
模板
催化作用
纳米技术
介孔二氧化硅
有机化学
材料科学
工程类
作者
Jie Zhu,Yihan Zhu,Liangkui Zhu,Marcello Rigutto,Alexander van der Made,Chengguang Yang,Shuxiang Pan,Yan Wang,Longfeng Zhu,Yinying Jin,Qi Sun,Qinming Wu,Xiangju Meng,Daliang Zhang,Yu Han,Jixue Li,Yueying Chu,Anmin Zheng,Shilun Qiu,Xiaoming Zheng,Feng‐Shou Xiao
摘要
Mesoporous zeolites are useful solid catalysts for conversion of bulky molecules because they offer fast mass transfer along with size and shape selectivity. We report here the successful synthesis of mesoporous aluminosilicate zeolite Beta from a commercial cationic polymer that acts as a dual-function template to generate zeolitic micropores and mesopores simultaneously. This is the first demonstration of a single nonsurfactant polymer acting as such a template. Using high-resolution electron microscopy and tomography, we discovered that the resulting material (Beta-MS) has abundant and highly interconnected mesopores. More importantly, we demonstrated using a three-dimensional electron diffraction technique that each Beta-MS particle is a single crystal, whereas most previously reported mesoporous zeolites are comprised of nanosized zeolitic grains with random orientations. The use of nonsurfactant templates is essential to gaining single-crystalline mesoporous zeolites. The single-crystalline nature endows Beta-MS with better hydrothermal stability compared with surfactant-derived mesoporous zeolite Beta. Beta-MS also exhibited remarkably higher catalytic activity than did conventional zeolite Beta in acid-catalyzed reactions involving large molecules.
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