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通过 UiO-66 金属有机骨架与 -丙醇反应将糠醛转化为糠醇的密度泛函研究。

Density Functional Investigation of the Conversion of Furfural to Furfuryl Alcohol by Reaction with -Propanol over UiO-66 Metal-Organic Framework.

机构信息

Department of Chemistry, Faculty of Liberal Arts and Science, Kasetsart University, Kamphaeng Saen Campus, Nakhon Pathom 73140, Thailand.

Department of Materials Science and Engineering, School of Molecular Science and Engineering, Vidyasirimedhi Institute of Science and Technology, Rayong 21201, Thailand.

出版信息

Inorg Chem. 2021 Apr 5;60(7):4860-4868. doi: 10.1021/acs.inorgchem.0c03764. Epub 2021 Mar 25.

Abstract

Carbonyl C═O bond reduction via catalytic transfer hydrogenation (CTH) is one of the essential processes for biomass conversion to valuable chemicals and fuels. Here, we investigate the CTH of furfural to furfuryl alcohol with -propanol on UiO-66 metal-organic frameworks using density functional theory calculations and linear scaling relations. Initially, the reaction over two defect sites presented on Zr-UiO-66, namely, dehydrated and hydrated sites, have been compared. The hydrated active site is favored over that on the dehydrated active site since the activation free energy of the rate-determining reaction step occurring on the hydrated active site is lower than that occurring on the dehydrated active site (14.9 vs 17.9 kcal/mol). The catalytic effect of exchanged tetravalent metals (Hf and Ti) on Zr-UiO-66 is also considered. We found that Hf-UiO-66 (13.5 kcal/mol) provides a lower activation energy than Zr-UiO-66 (14.9 kcal/mol) and Ti-UiO-66 (19.4 kcal/mol), which corresponds to it having a higher Lewis acidity. The organic linkers of UiO-66 MOFs play a role in stabilizing all of the species on potential energy surfaces. The linear scaling relationship also reveals the significant role of the UiO-66 active site in activating the carbonyl C═O of furfural, and strong relationships are observed between the activation free energy, the charge of the metal at the MOF active sites, and the complexation energies in reaction coordinates.

摘要

通过催化转移氢化(CTH)还原羰基 C═O 键是将生物质转化为有价值的化学品和燃料的关键过程之一。在这里,我们使用密度泛函理论计算和线性标度关系研究了 -丙醇在 UiO-66 金属有机骨架上对糠醛的 CTH。最初,比较了在 Zr-UiO-66 上呈现的两个缺陷位点,即脱水和水合位点上的反应。水合活性位优于脱水活性位,因为发生在水合活性位上的速率决定反应步骤的活化自由能低于发生在脱水活性位上的活化自由能(14.9 与 17.9 kcal/mol)。还考虑了交换的四价金属(Hf 和 Ti)对 Zr-UiO-66 的催化作用。我们发现 Hf-UiO-66(13.5 kcal/mol)提供的活化能低于 Zr-UiO-66(14.9 kcal/mol)和 Ti-UiO-66(19.4 kcal/mol),这对应于它具有更高的路易斯酸度。UiO-66 MOFs 的有机配体在稳定所有势能面上的物种方面发挥作用。线性标度关系还揭示了 UiO-66 活性位在激活糠醛的羰基 C═O 方面的重要作用,并且在活化自由能、MOF 活性位上金属的电荷和反应坐标中的络合能之间观察到强烈的关系。

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