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Direct Synthesis of Aluminosilicate IWR Zeolite from a Strong Interaction between Zeolite Framework and Organic Template

机译:沸石骨架与有机模板之间的强相互作用直接合成铝硅酸盐IWR沸石

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摘要

A large amount of zeolite structures are still not synthetically available or not available in the form of aluminosilicate currently. Despite significant progress in the development of predictive concepts for zeolite synthesis, accessing some of these new materials is still challenging. One example is the IWR structure as well. Despite successful synthesis of Ge-based IWR zeolites, direct synthesis of aluminosilicate IWR zeolite is still not successful. In this report we show how a suitable organic structure directing agent (OSDA), through modeling of an OSDA/zeolite cage interaction, could access directly the aluminum-containing IWR structure (denoted as COE-6), which might allow access to new classes of materials and thus open opportunities in valuable chemical applications. The experimental results reveal that the COE-6 zeolites with a SiO2/Al2O3 ratio as low as 30 could be obtained. Very interestingly, the COE-6 zeolite has much higher hydrothermal and thermal stabilities than those of the conventional Ge-Al-IWR zeolite. In methanol-to-propylene (MTP) reaction, the COE-6 zeolite exhibits excellent selectivity for propylene, offering a potential catalyst for MTP reaction in the future.
机译:大量的沸石结构目前仍不能合成或以硅铝酸盐的形式获得。尽管在开发用于沸石合成的预测概念方面取得了重大进展,但获得其中一些新材料仍然具有挑战性。 IWR结构也是一个例子。尽管成功地合成了基于Ge的IWR沸石,但是铝硅酸盐IWR沸石的直接合成仍然没有成功。在本报告中,我们展示了如何通过对OSDA /沸石笼相互作用的建模,合适的有机结构导向剂(OSDA)可以直接访问含铝IWR结构(表示为COE-6),这可能允许使用新的类别材料的使用,从而为有价值的化学应用提供了机会。实验结果表明,可以获得SiO2 / Al2O3比低至30的COE-6沸石。非常有趣的是,COE-6沸石的水热稳定性和热稳定性比常规的Ge-Al-IWR沸石高得多。在甲醇制丙烯(MTP)反应中,COE-6沸石对丙烯具有优异的选择性,为将来的MTP反应提供了潜在的催化剂。

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