Prodinger Sebastian, Berdiell Izar Capel, Cordero-Lanzac Tomas, Bygdnes Odd Reidar, Solemsli Bjørn Gading, Kvande Karoline, Arstad Bjørnar, Beato Pablo, Olsbye Unni, Svelle Stian
Center for Materials Science and Nanotechnology (SMN), Department of Chemistry, University of Oslo 1033 Blindern 0315 Oslo Norway
SINTEF Industry Forskningsveien 1 0373 Oslo Norway.
J Mater Chem A Mater. 2023 Sep 28;11(40):21884-21894. doi: 10.1039/d3ta03444e. eCollection 2023 Oct 17.
Mordenite (MOR) zeolite, an important industrial catalyst exists in two, isostructural variants defined by their port-size, small and large-port. Here we show for the first time how a systematic, single-parameter variation influences the synthesis out-come on the final MOR material leading to distinctly different catalysts. The cation identity has a direct impact on the synthesis mechanism with potassium cations generating the more constrained, small-port MOR variant compared to the large-port obtained with sodium cations. This was expressed by different degrees of accessibility ascertained with a combination of toluene breakthrough and temperature programmed desorption (TPD), propylamine TPD, as well as sterically sensitive isobutane conversion. Rietveld refinement of the X-ray diffractograms elucidated the preferential siting of the smaller sodium cations in the constricted 8-ring, from which differences in Al distribution follow. Note, there are no organic structure directing agents utilized in this synthesis pointing at the important role of inorganic structure directing agents (ISDA).
丝光沸石(MOR)是一种重要的工业催化剂,存在两种由其孔径定义的同构变体,即小孔径和大孔径变体。在此,我们首次展示了系统的单参数变化如何影响最终MOR材料的合成结果,从而导致截然不同的催化剂。阳离子特性对合成机制有直接影响,与用钠离子生成的大孔径变体相比,钾离子生成的是更受限的小孔径MOR变体。这通过甲苯穿透和程序升温脱附(TPD)、丙胺TPD以及空间敏感的异丁烷转化相结合确定的不同可达程度来体现。对X射线衍射图进行的Rietveld精修阐明了较小的钠离子在狭窄的8元环中的优先占位,由此导致铝分布的差异。请注意,该合成过程未使用有机结构导向剂,这表明无机结构导向剂(ISDA)具有重要作用。