Department of Chemistry, University of Bath, Claverton Down, Bath BA2 7AY, UK.
Department of Chemistry, University of the Western Cape, Bellville, Cape Town 7535, South Africa.
Molecules. 2019 Feb 12;24(3):641. doi: 10.3390/molecules24030641.
The roles of organic additives in the assembly and crystallisation of zeolites are still not fully understood. This is important when attempting to prepare novel frameworks to produce new zeolites. We consider 18-crown-6 ether (18C6) as an additive, which has previously been shown to differentiate between the zeolite EMC-2 (EMT) and faujasite (FAU) frameworks. However, it is unclear whether this distinction is dictated by influences on the metastable free-energy landscape or geometric templating. Using high-pressure synchrotron X-ray diffraction, we have observed that the presence of 18C6 does not impact the EMT framework flexibility-agreeing with our previous geometric simulations and suggesting that 18C6 does not behave as a geometric template. This was further studied by computational modelling using solid-state density-functional theory and lattice dynamics calculations. It is shown that the lattice energy of FAU is lower than EMT, but is strongly impacted by the presence of solvent/guest molecules in the framework. Furthermore, the EMT topology possesses a greater vibrational entropy and is stabilised by free energy at a finite temperature. Overall, these findings demonstrate that the role of the 18C6 additive is to influence the free energy of crystallisation to assemble the EMT framework as opposed to FAU.
有机添加剂在沸石的组装和结晶中的作用仍未完全理解。当试图制备新型骨架来生产新的沸石时,这一点很重要。我们考虑 18-冠-6 醚(18C6)作为添加剂,先前的研究表明它可以区分 EMCE2(EMT)和丝光沸石(FAU)骨架。然而,目前尚不清楚这种区别是由对亚稳自由能景观的影响还是由几何模板决定的。我们使用高压同步加速器 X 射线衍射,观察到 18C6 的存在并不影响 EMT 骨架的灵活性,这与我们之前的几何模拟结果一致,并表明 18C6 不作为几何模板起作用。通过使用固态密度泛函理论和晶格动力学计算的计算建模进一步研究了这一点。结果表明,FAU 的晶格能低于 EMT,但受骨架中溶剂/客体分子存在的强烈影响。此外,EMT 拓扑结构具有更大的振动熵,并在有限温度下通过自由能稳定。总的来说,这些发现表明 18C6 添加剂的作用是影响结晶的自由能以组装 EMT 骨架,而不是 FAU。