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结构缺陷在氟化物介导的硅铝酸盐沸石合成中的作用。

The role of structural defects in the fluoride-mediated synthesis of aluminosilicate zeolites.

作者信息

Kemp Kingsley Christian, Altundal Ömer F, Jo Donghui, Huang Weidong, Wang Qiang, Deng Feng, Sastre German, Hong Suk Bong

机构信息

Center for Ordered Nanoporous Materials Synthesis, Division of Environmental Science and Engineering, POSTECH Pohang 37673 South Korea

Instituto de Tecnologia Quimica (UPV-CSIC), Universidad Politécnica de Valencia Avenida Naranjos s/n Valencia 46022 Spain

出版信息

Chem Sci. 2025 Mar 25;16(17):7579-7589. doi: 10.1039/d5sc00899a. eCollection 2025 Apr 30.

Abstract

The existence of framework defects in zeolites, an important class of industrial catalysts and adsorbents, has long been recognized, but little is known about their exact role in zeolite crystallization. Here we show that despite their relatively high framework Al content (Si/Al = 11.5-13.8), as-synthesized PWO, PWW and RTH zeolites, obtained using various trimethylpyridinium cation isomers as organic structure-directing agents (OSDAs) in concentrated fluoride media, contain unexpectedly large amounts of SiO···HOSi defects which counterbalance the charge of 11-39% of the total OSDA cations occluded per unit cell, but have only a negligible amount (<0.1 ions per unit cell) of fluoride anions. The results suggest that the phase selectivity of the crystallization in the presence of fluoride ions may be determined by a combination of Al incorporation into the silicate framework, the type of OSDAs used and the microstructure and concentration of SiO···HOSi defects formed. This study provides a new basis for better understanding the fundamental aspects of zeolite crystallization mechanisms.

摘要

沸石是一类重要的工业催化剂和吸附剂,其骨架缺陷的存在早已为人所知,但对于它们在沸石结晶过程中的确切作用却知之甚少。在此我们表明,尽管合成态的PWO、PWW和RTH沸石具有相对较高的骨架铝含量(硅铝比=11.5 - 13.8),它们是在浓氟介质中使用各种三甲基吡啶阳离子异构体作为有机结构导向剂(OSDAs)制得的,但却含有数量惊人的SiO···HOSi缺陷,这些缺陷抵消了每晶胞中11% - 39%的总OSDA阳离子电荷,而氟阴离子的含量却微乎其微(每晶胞<0.1个离子)。结果表明,在氟离子存在下结晶的相选择性可能由铝掺入硅酸盐骨架、所用OSDAs的类型以及形成的SiO···HOSi缺陷的微观结构和浓度共同决定。这项研究为更好地理解沸石结晶机制的基本方面提供了新的依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c231/12042945/36c5c107c9e5/d5sc00899a-f1.jpg

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