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Theoretical adsorption enthalpies of alkyl chlorides in acidic zeolite catalysts

机译:烷基沸石在酸性沸石催化剂中的理论吸附焓

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摘要

The adsorption enthalpies, ΔH_(ad), of a series of alkyl chlorides in acidic (H-FAU) zeolite have been investigated using density functional theory (DFT) and molecular mechanics methods. Two models were employed to simulate the zeolite cluster,-each containing one Br0nsted acid site. The first model, corresponding to the formula Al(OH)2(OHp)(SiOH2)ii, forms a 12-membered ring (12T) constructed from 11 Si tetrahedral atoms and one Al atom in the windows of the twelve O atoms and has been fully optimized at the B3LYP/6-31+G(d,p) level of theory. The second model is represented by the more realistic cluster of 84 tetrahedral units (84T) and has been examined with the help of the ONIOM2 approach using the two layered schemes B3LYP/6-31+G(d,p):UFF and M06-2X/6-31+G(d,p):UFF in two series of calculations. The latter series using the newly developed M06-2X functional by Truhlar and coworkers (Zhao et al., J Chem Phys 123:161103, 2005; Zhao and Truhlar, Theor Chem Ace 120:215, 2008), is expected to make a more reliable and realistic estimation of the effect of the dispersion forces which are quite important in this type of systems. The calculated structural variations and adsorption enthalpies of the van der Waals 1:1 adsorption complex assumingly formed, are shown to exhibit an impressive dependence both on the size of the zeolite cluster model and on the theoretical method employed, particularly the M06-2X functional. Indeed, the M06-2X calculations bring out most clearly the important role and the significant contribution of the dispersion forces to the adsorption enthalpies of a series of the alkyl chlorides on acidic zeolite leading to ΔH_(ad) values higher by more than 30 % compared to the B3LYP results. Finally, the present calculations reconfirm the dependence of the interaction energy on the size and the branching of the alkyl radical.
机译:使用密度泛函理论(DFT)和分子力学方法研究了一系列烷基氯在酸性(H-FAU)沸石中的吸附焓ΔH_(ad)。使用两个模型来模拟沸石簇,每个模型包含一个布朗斯台德酸位点。第一个模型对应于分子式Al(OH)2(OHp)(SiOH2)ii,在12个O原子的窗口中形成由11个Si四面体原子和一个Al原子构成的12元环(12T)已在B3LYP / 6-31 + G(d,p)的理论水平上进行了完全优化。第二个模型由84个四面体单元(84T)的更实际的簇表示,并已在ONIOM2方法的帮助下使用两个分层方案B3LYP / 6-31 + G(d,p):UFF和M06- 2X / 6-31 + G(d,p):UFF在两个系列的计算中。预期使用Truhlar及其同事新开发的M06-2X功能的后一系列(Zhao等人,J Chem Phys 123:161103,2005; Zhao和Truhlar,Theor Chem Ace 120:215,2008),将会有更多的发展。对色散力影响的可靠和现实的估计,在这种类型的系统中非常重要。假定形成的范德华斯1:1吸附复合物的计算结构变化和吸附焓显示出对沸石团簇模型的尺寸和所用理论方法(特别是M06-2X功能)的依赖关系。确实,M06-2X计算最清楚地表明了分散力对一系列烷基氯在酸性沸石上的吸附焓的重要作用和显着贡献,导致ΔH_(ad)值比其高30%以上。到B3LYP结果。最后,本计算再次证实了相互作用能对烷基自由基的大小和分支的依赖性。

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