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首页> 外文期刊>Journal of Catalysis >A priori selection of shape-selective zeolite catalysts for the synthesis of 2,6-dimethylnaphthalene
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A priori selection of shape-selective zeolite catalysts for the synthesis of 2,6-dimethylnaphthalene

机译:用于合成2,6-二甲基萘的择形沸石催化剂的先验选择

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摘要

Modeling tools based on molecular mechanics and molecular dynamics were used for selecting shape-selective zeolite catalysts for the synthesis of 2,6-dimethylnapthalene (2,6-DMN) through the alkylation of naphthalene (NAPH) or via isomerization of other DMN isomers, A number of medium- (MFI and EUO) and large-pore zeolites (~*BEA, MOR, MAZ, FAU, LTL, OFF, and MTW) were considered and for each of them the minimum energy pathways for the diffusion of naphthalene, 1- and 2-methylnapthalene (MNs), and 1,5-, 1,6-, 2,6-, and 2,7-dimethylnapthalene (DMNs) were computed. The results of the simulations indicated that the diffusion of MNs and DMNs isomers in the medium-pore zeolite is impeded by high-energy barriers, leading to the conclusion that this kind of structure can be used neither in the isomerization nor in the alkylation reaction. In contrast, large-pore zeolites are more promising though their behavior strongly depends on the effective size of the pore openings. Among the, MTW was predicted to be the most promising candidate for the selective alkylation of NAPH to 2,6-DMA. In fact, the simulations indicated high-energy diffusion barriers not only for molecules bearing a-CH_3 group in the alpha-position but also for the undesired 2,7-DMN molecule. Catalytic tests, performed in the presence of 1,2,4-trimethylbenzene as a solvent, confirmed the prediction since MTW gave the highest 2,6-DMN yields with a 2,6-/2,7-DMN ratio in the range 2.0-2.6, well above the thermodynamic value of approx1 obtained with the other zeolites. The good catalytic performances of MTW were explained by the fact that, unique among the large-pore zeolities considered, this zeolite showed a better stabilization of the 1,1-diarylmethane intermediate molecules leading to 2-MN, 2,6-DMN, and 2,7-DMN. Their formation can be considered more probable than for those deriving from the electrophilic attack of the benzyl carbocation in the alpha-position of the naphthalene ring.
机译:使用基于分子力学和分子动力学的建模工具来选择形状选择性沸石催化剂,以通过萘烷基化(NAPH)或通过其他DMN异构体的异构化来合成2,6-二甲基萘(2,6-DMN),考虑了许多中型(MFI和EUO)和大孔沸石(〜* BEA,MOR,MAZ,FAU,LTL,OFF和MTW),并且对于每种沸石,萘扩散的最小能量路径为:计算了1-和2-甲基萘(MNs),以及1,5-,1,6-,2,6-和2,7-二甲基萘(DMN)。模拟结果表明,高能垒阻碍了MNs和DMNs异构体在中孔沸石中的扩散,从而得出结论,这种结构既不能用于异构化,也不能用于烷基化反应。相反,尽管大孔沸石的行为在很大程度上取决于孔的有效尺寸,但其前景更为广阔。其中,MTW被认为是将NAPH选择性烷基化为2,6-DMA的最有希望的候选者。实际上,模拟表明不仅对于在α位带有α-CH_3基团的分子,而且对于不希望的2,7-DMN分子,都具有高能扩散势垒。在1,2,4-三甲基苯作为溶剂的情况下进行的催化测试证实了这一预测,因为MTW以2,6- / 2,7-DMN的比例提供了最高的2,6-DMN产率,范围为2.0 -2.6,远高于其他沸石获得的约1的热力学值。 MTW的良好催化性能是由以下事实解释的:在所考虑的大孔沸石中,该沸石显示出1,2-二芳基甲烷中间分子更好的稳定性,从而导致2-MN,2,6-DMN和2,7-DMN。与衍生自在萘环的α位上的苄基碳正离子的亲电子攻击的那些相比,可以认为它们的形成更有可能。

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