探索硬碳模板分层 SAPO-5 中介质厚度对乙醇脱水的影响†。

Matthew E. Potter, Evangeline B. McShane, Nienke L. Visser, Johannes D. Meeldijk, Lisa J. Allen, Stephen M. King, Marina Carravetta, Petra E. de Jongh, Bart D. Vandegehuchte and Robert Raja
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引用次数: 0

摘要

微孔固体酸催化剂可对化学过程进行大量控制。然而,它们梦寐以求的较小孔隙也有一些缺点,包括基底范围有限、失活速度较快以及孔隙堵塞。因此,在微孔框架旁引入中孔,以创建分层多孔框架具有显著优势。这项研究探索了调整我们的磷酸硅铝(SAPO-5)微孔合成程序以加入不同形状的碳纳米模板的影响。我们利用氮的物理吸附作用、透射电子显微镜和小角中子散射对所形成的不同大小的中孔进行了探索。在这项工作中,我们独特地利用小角中子散射来探测用硬模板法合成的分层硅铝磷酸盐。在这里,小角中子散射能够探测介孔的形状和大小,并将介孔的可及性与催化性能联系起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Exploring the influence of mesoporosity in hard carbon-templated hierarchical SAPO-5 for ethanol dehydration†

Exploring the influence of mesoporosity in hard carbon-templated hierarchical SAPO-5 for ethanol dehydration†

Microporous solid acid catalysts offer a vast amount of control over chemical processes. However, their coveted smaller pores also have several drawbacks, including a limited substrate scope, faster deactivation, and pore blockage. As such, there are significant advantages to introducing mesopores alongside the microporous framework, to create hierarchically porous frameworks. This work explores the influence of adapting our microporous synthetic procedure for silicoaluminophosphate (SAPO-5) to include different shaped carbon nanotemplates. The differing size of the mesopores formed is explored using nitrogen physisorption, transmission electron microscopy and small angle neutron scattering. In this work, we uniquely use small angle neutron scattering for probing hierarchical silicoaluminophosphates synthesised with hard templating methods. Here small angle neutron scattering was able to probe the shape and size of the mesopores and link their accessibility to their catalytic performance.

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