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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Methanol Oxidation to Formaldehyde on VSiBEA Zeolite: A Combined DFT/vdW/Transition Path Sampling and Experimental Study
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Methanol Oxidation to Formaldehyde on VSiBEA Zeolite: A Combined DFT/vdW/Transition Path Sampling and Experimental Study

机译:VSiBEA沸石上甲醇氧化制甲醛的研究:DFT / vdW /过渡路径采样和实验研究的结合

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摘要

Density functional calculations have been performed applying periodic boundary conditions to investigate the oxidation of methanol on vanadium-containing SiBEA zeolite (VSiBEA). Different types of reaction configurations have been set up in conformity with the experimental conditions. Thermodynamic property calculations for T > 0 K have been performed and compared with the available experimental results. Transition path sampling was employed to unravel the reaction mechanisms for oxidation of methanol on vanadium-containing SiBEA zeolites at three temperatures (300, 415, and 523 K). Dispersion interactions were accounted for by adding a damped dispersion term to the PBE energies. The study of different reaction pathways was combined with experimental data that enabled us to shed more light on the reaction mechanism.
机译:已经应用周期性边界条件进行了密度泛函计算,以研究甲醇在含钒的SiBEA沸石(VSiBEA)上的氧化。已经根据实验条件建立了不同类型的反应构型。已经进行了T> 0 K的热力学性质计算,并与可用的实验结果进行了比较。使用过渡路径采样来揭示在三种温度(300、415和523 K)下甲醇在含钒的SiBEA沸石上氧化的反应机理。色散相互作用是通过在PBE能量上添加一个阻尼色散项来解决的。对不同反应途径的研究与实验数据相结合,使我们对反应机理有了更多的了解。

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