沸石
氢键
化学工程
材料科学
纳米技术
化学
催化作用
有机化学
分子
工程类
作者
Hao Li,Zhenghan Zhang,Yanan Xu,Shiyue Zhang,Pengliang Gu,Qing Hu,Yuxin Zhang,W. Wang,Zhan Shi,Xinyi Fu,Jian Li,Hong‐Bin Du
摘要
The targeted synthesis of silicate zeolites with specific pore structures has been one of the great challenges for synthetic chemists. Herein, we report a new zeolite synthesis strategy for the preparation of high-silica and all-silica large-pore zeolites by utilizing hydroxyl-containing organic cations as structure-directing agents. These cations form hydrogen-bonding assemblies during the low-temperature aging stage, thereby directing the formation of the high-silica and all-silica zeolite NUD-19. NUD-19 is topologically related to the germanosilicates ITQ-21 and NUD-3, and is topologically identical to germanate PKU-14, possessing a three-dimensional intersecting 12-membered-ring large-pore network with spherical 1.18 nm-diameter cavities. NUD-19 remains structurally stable after calcination at 550 °C and displays permanent porosity with micropores, mesopores, and macropores, making it a promising candidate for application in the fields of catalysis, adsorption, and separation. This preparative method could be applied to synthesize large-pore and ultra-large-pore zeolites that are not readily obtained under conventional conditions.
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