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On the Mn promoted synthesis of higher alcohols over Cu derived ternary catalysts

机译:Mn晋升高级醇的合成在铜三元催化剂

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This work provides insight into the promotional effect of Mn on the synthesis of higher alcohols over Cubased ternary catalysts through XPS and in situ DRIFTS and powder XRD. These revealed that the surface of K-CuZnAl, an active catalyst for CO hydrogenation to methanol, possesses Cu+ sites able to adsorb CO associatively and Cu-0 sites for H-2 dissociation. Here we show that exchanging Zn with Mn induces a strong interaction between Cu and Mn that decreases the overall copper surface area and increases the Cu+/Cu-0 ratio. In situ DRIFTS showed that electronic modification of Cu+ sites by proximate Mn favors dissociative CO chemisorption, resulting in the formation of C and O adspecies that are precursors to higher alcohol formation. The decrease in metallic copper limits available sites for H-2 dissociation, and hence retards the hydrogenation of oxygen-containing intermediates, thereby further promoting carbon-chain growth. Mn also increases the dispersion of the K promoter over the catalyst surface, providing abundant basic sites for aldol-type condensation reactions to branched oxygenates.
机译:这项工作提供了洞察促销锰对高醇的合成的影响在不同的古巴通过XPS和三元催化剂原地漂移和粉末x射线衍射。K-CuZnAl的表面,一个活跃的催化剂有限公司甲醇加氢,拥有铜+网站能够吸附CO的联想和Cu-0网站2分离。交换锌和锰引发强烈铜和锰之间的相互作用,降低了整体铜表面面积和增加了铜+ / Cu-0比率。电子通过直接修改铜+网站Mn支持离解CO化学吸收作用,导致C、O adspecies的形成形成高酒精的前体。金属铜的减少限制网站2分离,因此阻碍含氧中间体加氢,从而进一步促进碳链增长。也会增加K启动子的色散催化剂表面,提供丰富的基本的网站aldol-type缩合反应支含。

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