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Molecular-scale perspective of water-catalyzed methanol dehydrogenation to formaldehyde

机译:水催化甲醇脱氢制甲醛的分子尺度研究

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Methanol steam reforming is a promising reaction for on-demand hydrogen production. Copper catalysts have excellent activity and selectivity for methanol conversion to hydrogen and carbon dioxide. This product balance is dictated by the formation and weak binding of formaldehyde, the key reaction intermediate. It is widely accepted that oxygen adatoms or oxidized copper are required to activate methanol. However, we show herein by studying a well-defined metallic copper surface that water alone is capable of catalyzing the conversion of methanol to formaldehyde. Our results indicate that six or more water molecules act in concert to deprotonate methanol to methoxy. Isolated palladium atoms in the copper surface further promote this reaction. This work reveals an unexpected role of water, which is typically considered a bystander in this key chemical transformation.
机译:甲醇蒸汽重整是按需生产氢气的有希望的反应。铜催化剂对于甲醇转化为氢气和二氧化碳具有出色的活性和选择性。甲醛的形成和弱结合决定了产物的平衡,甲醛是关键的反应中间体。人们普遍认为需要氧原子或氧化铜来活化甲醇。但是,我们在这里通过研究定义明确的金属铜表面来表明,仅水就能催化甲醇转化为甲醛。我们的结果表明,六个或更多的水分子协同作用将甲醇去质子化为甲氧基。铜表面中孤立的钯原子进一步促进了该反应。这项工作揭示了水的意外作用,水通常被认为是关键化学转化过程中的旁观者。

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