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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >DFT Study of Closed and Open Sites of BEA, FAU, MFI, and BEC Zeolites Substituted with Tin and Titanium
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DFT Study of Closed and Open Sites of BEA, FAU, MFI, and BEC Zeolites Substituted with Tin and Titanium

机译:DFT研究用锡和钛替代BEA,FAU,MFI和BEC沸石的封闭和开放场所

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DFT with long-range corrections and ONIOM along with a polarizable-continuum model were used to analyze zeolites BEA, FAU, MFI, and BEC substituted with Sn and Ti. The preferential substitution sites for Ti and Sn in the different frameworks are reported. The Lewis acidities were measured through the NH3 binding energies and through the charge transfer of NH3 upon adsorption. The deprotonation energies of the open sites, which are proportional to the Bronsted acidities, and the hydrolysis energies are also reported. We also present the properties of BEA with a single and a double Sn-substitution to compare the active sites obtained with two methods commonly employed for the synthesis of Sn-BEA. Among the zeolites analyzed in this study, Sn-BEA with a double Sn-substitution has the highest Lewis acidity. The formation of open sites through the hydrolysis of Sn-BEA, Sn-FAU, and Ti-FAU is energetically favorable, but it is not favorable in MFI or Ti-BEA. On the basis of the deprotonation energies, the open sites of Sn-BEA have a strong Bronsted acidity, comparable to Al-BEA or Al-MFI. We also demonstrate that the VDW forces in the binding energies of NH3 on MFI are more significant than in the other zeolite frameworks and that these forces decrease with increasing pore size.
机译:具有远距离校正的DFT和ONIOM以及可极化连续谱模型用于分析用Sn和Ti取代的沸石BEA,FAU,MFI和BEC。报道了在不同框架中Ti和Sn的优先取代位。 Lewis酸度是通过NH3的结合能和吸附时NH3的电荷转移来测量的。还报告了与布朗斯台德酸度成比例的空位的去质子化能和水解能。我们还介绍了具有单和双Sn取代的BEA的性质,以比较用两种通常用于合成Sn-BEA的方法获得的活性位点。在这项研究中分析的沸石中,具有双重Sn取代的Sn-BEA具有最高的路易斯酸度。通过Sn-BEA,Sn-FAU和Ti-FAU的水解形成开放位点在能量上是有利的,但在MFI或Ti-BEA中则不利。基于去质子能,Sn-BEA的开放位点具有很强的布朗斯台德酸度,与Al-BEA或Al-MFI相当。我们还证明,在MFI上NH3的结合能中的VDW力比其他沸石骨架中的VDW力更大,并且这些力随着孔径的增加而减小。

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