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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Adsorption and Tautomerization Reaction of Acetone on Acidic Zeolites: The Confinement Effect in Different Types of Zeolites
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Adsorption and Tautomerization Reaction of Acetone on Acidic Zeolites: The Confinement Effect in Different Types of Zeolites

机译:丙酮在酸性沸石上的吸附和互变异构反应:不同类型沸石的封闭作用

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The adsorption and tautomerization reaction of acetone in H-FER, H-ZSM-5, and H-MCM-22 zeolites has been studied using full quantum calculations at the M06-2X/6-311 +G(2df,2p) level of theory. The combination of a large quantum cluster and this meta-hybrid density functional results in reasonably accurate adsorption energies of -26.9, -28.1, and -23.9 kcal/mol for acetone adsorption in H-FER, H-ZSM-5, and H-MCM-22, respectively. Due to the acidity of the zeolite and the framework confinement effect, the tautomerization of acetone proceeds through a much lower activation barrier than in the isolated gas phase or in the presence of water molecules alone. The activation energies are calculated to be 24.9, 20.5, and 16.6 kcal/mol in H-FER, H-ZSM-5 and H-MCM-22, respectively. The endothermic reaction energy decreases with increasing of the zeolite pore sizes and amounts to 22.7, 17.6, and 15.9 kcal/mol for the reaction in H-FER, H-ZSM-5 and H-MCM-22, respectively. In addition, the adsorbed acetone enol is found to be highly unstable in the zeolite framework and readily reverse-transforms to adsorbed acetone with a very small activation energy. The activity trend and relative stabilities of the adsorbed keto and enol forms are well correlated with the interactions within the Bronsted acid site.
机译:丙酮在H-FER,H-ZSM-5和H-MCM-22分子筛中的吸附和互变异构反应已通过M06-2X / 6-311 + G(2df,2p)的全量子计算进行了研究理论。大量子团簇与该亚杂化密度泛函的组合可导致H-FER,H-ZSM-5和H-中丙酮吸附的合理准确的吸附能为-26.9,-28.1和-23.9 kcal / mol。 MCM-22,分别。由于沸石的酸性和骨架限制作用,丙酮的互变异构化通过的活化势垒比分离的气相或仅存在水分子时低得多。在H-FER,H-ZSM-5和H-MCM-22中,活化能分别计算为24.9、20.5和16.6 kcal / mol。吸热反应能量随沸石孔径的增加而降低,在H-FER,H-ZSM-5和H-MCM-22中分别达到22.7、17.6和15.9 kcal / mol。另外,发现吸附的丙酮烯醇在沸石骨架中是高度不稳定的,并且易于以非常小的活化能逆向转化为吸附的丙酮。吸附的酮和烯醇形式的活性趋势和相对稳定性与布朗斯台德酸位点内的相互作用密切相关。

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