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通过电子晶体学解析中孔沸石ZSM-57晶体畴尺寸的孪晶与可调性

Unraveling the Twin and Tunability of the Crystal Domain Sizes in the Medium-Pore Zeolite ZSM-57 by Electron Crystallography.

作者信息

Wang Lei, Yan Nana, Liu Xiaona, Zhao Xuebin, Shen Meikun, Liu Leifeng, Tian Peng, Guo Peng, Liu Zhongmin

机构信息

National Engineering Laboratory for Methanol to Olefins, Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, P. R. China.

University of the Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Chemistry. 2019 Jan 18;25(4):1029-1036. doi: 10.1002/chem.201804269. Epub 2018 Dec 12.

Abstract

Tailoring the morphology of a specific crystalline material through distinct crystal growth mechanisms (classical and nonclassical) is challenging. Herein, we report the two unique morphologies of a medium-pore (10×8-ring) zeolite, ZSM-57, prepared by employing an identical organic structure-directing agent (OSDA) and different inorganic cations, namely Na and K , denoted as ZSM-57-Na (pentagonal nanoplates) and ZSM-57-K (pentagonal nanoprisms), respectively. The tunable twin domain size and twin boundaries in both samples have been unraveled at the atomic level by electron crystallography. It is of significance to note that the 10-ring pore openings run perpendicular to the pentagonal nanoplates and nanoprisms. Moreover, the distinct crystal growth mechanisms, which result in the different unique morphologies and tunable twin domains, were further determined by electron crystallography combined with other techniques. Nonclassical growth involving the aggregation of amorphous aluminosilicate nanoparticles to the smooth ZSM-57-Na crystal surface dominates the ZSM-57-Na crystallization process. For the ZSM-57-K sample, the classical layer-by-layer growth through the addition of silica molecules to advancing steps on the crystal surface dominates the ZSM-57-K crystallization process. The different morphologies of both samples result in the distinct catalytic lifespan of the methanol conversion and selectivity of lower olefins.

摘要

通过不同的晶体生长机制(经典和非经典)来定制特定晶体材料的形态具有挑战性。在此,我们报道了一种中孔(10×8环)沸石ZSM-57的两种独特形态,它们是通过使用相同的有机结构导向剂(OSDA)和不同的无机阳离子(即Na和K)制备的,分别表示为ZSM-57-Na(五边形纳米片)和ZSM-57-K(五边形纳米棱柱)。通过电子晶体学在原子水平上揭示了两个样品中可调节的孪晶域尺寸和孪晶界。值得注意的是,10环孔口垂直于五边形纳米片和纳米棱柱。此外,通过电子晶体学结合其他技术进一步确定了导致不同独特形态和可调节孪晶域的不同晶体生长机制。涉及无定形硅铝酸盐纳米颗粒聚集到光滑的ZSM-57-Na晶体表面的非经典生长主导了ZSM-57-Na的结晶过程。对于ZSM-57-K样品,通过向晶体表面推进步骤添加二氧化硅分子的经典逐层生长主导了ZSM-57-K的结晶过程。两个样品的不同形态导致甲醇转化的催化寿命和低级烯烃的选择性不同。

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