首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Layering of ferrierite sheets by using large co-structure directing agents: Zeolite synthesis using 1-benzyl-1-methylpyrrolidinium and tetraethylammonium
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Layering of ferrierite sheets by using large co-structure directing agents: Zeolite synthesis using 1-benzyl-1-methylpyrrolidinium and tetraethylammonium

机译:通过使用大型共结构导向剂将镁碱沸石片层化:使用1-苄基-1-甲基吡咯烷鎓和四乙基铵合成沸石

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In view of the success of our new synthesis methodology regarding the use of co-structure directing agents (co-SDA) in zeolite synthesis, and in a search for the discovery of new stable ferrierite-type layered materials, which are useful precursors for the productions of shape-selective catalysts, we have further explored the use of co-SDAs by using a new cation, tetraethylammonium (TEA), as co-SDA together with the larger 1-benzyl-1-methylpyrrolidinium cation (bmp). As a result, layered ferrierite-type materials with a large interlayer separation have been obtained. Interestingly, in contrast to the ferrierite layered materials obtained with quinuclidine and bmp using the same approach, these layered materials are stable in time, i.e., an increase of the crystallisation time does not lead in this case to an approach of the layers to finally yield a more condensed ferrierite (FER) structure, as was the case for the materials obtained with quinuclidine. A complementary computational study allowed us to gain insights into the mechanism of crystallisation of ferrierite-type materials in this system. Simulation results evidenced that the inability of TEA to direct the synthesis of the fully-condensed structure is due to the large size of the TEA cations that can be accommodated neither in the cavities nor in the 10 MR channels of the fully-condensed FER structure. Instead, the simulations show that the most stable situation for the accommodation of this co-SDA in the ferrierite cavities is reached when the FER layers are separated at an interlayer distance of ~2 A, in close agreement with the experimental findings.
机译:鉴于我们关于在沸石合成中使用共结构导向剂(co-SDA)的新型合成方法的成功以及寻找新型稳定的镁碱沸石型层状材料的发现,这些材料是制备沸石的有用前体。在生产形状选择催化剂时,我们通过使用新的阳离子四乙铵(TEA)和较大的1-苄基-1-甲基吡咯烷鎓阳离子(bmp)作为共SDA,进一步探索了co-SDA的使用。结果,获得了层间间距大的层状镁碱沸石型材料。有趣的是,与使用相同方法用喹核啶和bmp得到的镁碱沸石层状材料相反,这些层状材料在时间上是稳定的,即,在这种情况下结晶时间的增加不会导致最终产生层的方法。像使用奎尼丁获得的材料一样,具有更紧密的镁碱沸石(FER)结构。一项补充的计算研究使我们能够深入了解镁橄榄石型材料在该系统中的结晶机理。仿真结果表明,TEA无法指导完全稠合结构的合成是由于TEA阳离子的尺寸较大,TEA阳离子既不能容纳在空腔中,也不能容纳在完全凝结FER结构的10 MR通道中。相反,模拟表明,当FER层在约2 A的层间距离处分离时,达到了在镁碱沸石空腔中容纳这种共SDA的最稳定情况。

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