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Aluminium distribution in ZSM-5 revisited: the role of Al-Al interactions

机译:再次探讨ZSM-5中的铝分布:Al-Al相互作用的作用

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摘要

We present a theoretical study of the distribution of Al atoms in zeolite ZSM-5 with Si/Al=47, where we focus on the role of Al-Al interactions rather than on the energetics of Al/Si substitutions at individual sites. Using interatomic potential methods, we evaluate the energies of the full set of symmetrically independent configurations of Al siting in a Si94Al2O192 cell. The equilibrium Al distribution is determined by the interplay of two factors: the energetics of the Al/Si substitution at an individual site, which tends to populate particular T sites (e.g. the T14 site), and the Al-Al interaction, which at this Si/Al maximises Al-Al distances in agreement with Dempsey’s rule. However, it is found that the interaction energy changes approximately as the inverse of the square of the distance between the two Al atoms, rather than the inverse of the distance expected if this were merely charge repulsion. Moreover, we find that the anisotropic nature of the framework density plays an important role in determining the magnitude of the interactions, which are not simply dependent on Al-Al distances.
机译:我们提出了一种在Si / Al = 47的ZSM-5沸石中Al原子分布的理论研究,其中我们着重于Al-Al相互作用的作用,而不是单个位置处Al / Si取代的能量。使用原子间电势方法,我们评估了Si94Al2O192电池中Al选址的对称独立构型的完整集合的能量。铝的平衡分布取决于两个因素的相互作用:在单个位点上的Al / Si取代的能量(倾向于填充特定的T位点(例如T14位点))以及在此位置的Al-Al相互作用Si / Al符合Dempsey规则,使Al-Al距离最大化。然而,发现相互作用能的变化近似为两个Al原子之间距离的平方的倒数,而不是预期的距离的倒数,如果这仅仅是电荷排斥。此外,我们发现骨架密度的各向异性在决定相互作用的大小中起着重要作用,而相互作用的大小并不仅仅取决于Al-Al的距离。

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