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水与铜在Cu-MgO-AlO催化剂上选择性CO加氢制甲醇中的协同作用

Water and Cu Synergy in Selective CO Hydrogenation to Methanol over Cu-MgO-AlO Catalysts.

作者信息

Fernández-Villanueva Estefanía, Lustemberg Pablo G, Zhao Minjie, Soriano Rodriguez Jose, Concepción Patricia, Ganduglia-Pirovano M Verónica

机构信息

Universitat Politècnica de València (UPV), Camè de Vera s/n, Valencia 46022, Spain.

Instituto de Catálisis y Petroleoquímica - Consejo Superior de Investigaciones Científicas (ICP - CSIC), Calle de Marie Curie 2, Madrid 28049, Spain.

出版信息

J Am Chem Soc. 2024 Jan 24;146(3):2024-2032. doi: 10.1021/jacs.3c10685. Epub 2024 Jan 11.

Abstract

The CO hydrogenation reaction to produce methanol holds great significance as it contributes to achieving a CO-neutral economy. Previous research identified isolated Cu species doping the oxide surface of a Cu-MgO-AlO-mixed oxide derived from a hydrotalcite precursor as the active site in CO hydrogenation, stabilizing monodentate formate species as a crucial intermediate in methanol synthesis. In this work, we present a molecular-level understanding of how surface water and hydroxyl groups play a crucial role in facilitating spontaneous CO activation at Cu sites and the formation of monodentate formate species. Computational evidence has been experimentally validated by comparing the catalytic performance of the Cu-MgO-AlO catalyst with hydroxyl groups against that of its hydrophobic counterpart, where hydroxyl groups are blocked using an esterification method. Our work highlights the synergistic effect between doped Cu ions and adjacent hydroxyl groups, both of which serve as key parameters in regulating methanol production via CO hydrogenation. By elucidating the specific roles of these components, we contribute to advancing our understanding of the underlying mechanisms and provide valuable insights for optimizing methanol synthesis processes.

摘要

通过CO加氢反应生产甲醇具有重要意义,因为它有助于实现CO中和的经济模式。先前的研究确定,在由水滑石前驱体制备的Cu-MgO-AlO混合氧化物的氧化物表面掺杂的孤立Cu物种是CO加氢反应的活性位点,可稳定单齿甲酸盐物种,这是甲醇合成中的关键中间体。在这项工作中,我们从分子层面理解了表面水和羟基如何在促进Cu位点上的CO自发活化及单齿甲酸盐物种的形成过程中发挥关键作用。通过比较具有羟基的Cu-MgO-AlO催化剂与其疏水对应物(其中羟基通过酯化方法被阻断)的催化性能,计算证据得到了实验验证。我们的工作突出了掺杂的Cu离子与相邻羟基之间的协同效应,这两者都是通过CO加氢调节甲醇生产中的关键参数。通过阐明这些组分的具体作用,我们有助于增进对潜在机制的理解,并为优化甲醇合成工艺提供有价值的见解。

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