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Origin of synergistic effects in bicomponent cobalt oxide-platinum catalysts for selective hydrogenation reaction

机译:双组分氧化钴-铂催化剂中选择性加氢反应的协同效应起源

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摘要

The synergistic nature of bicomponent catalysts remains a challenging issue, due to the difficulty in constructing well-defined catalytic systems. Here we study the origin of synergistic effects in CoOx-Pt catalysts for selective hydrogenation by designing a series of closely contacted CoOxPt/TiO2 and spatially separated CoOx/TiO2/Pt catalysts by atomic layer deposition (ALD). For CoOx/TiO2/Pt, CoOx and platinum are separated by the walls of titania nanotubes, and the CoOx-Pt intimacy can be precisely tuned. Like CoOxPt/TiO2, the CoOx/TiO2/Pt shows higher selectivity to cinnamyl alcohol than monometallic TiO2/Pt, indicating that the CoOx-Pt nanoscale intimacy almost has no influence on the selectivity. The enhanced selectivity is ascribed to the increased oxygen vacancy resulting from the promoted hydrogen spillover. Moreover, platinum-oxygen vacancy interfacial sites are identified as the active sites by selectively covering CoOx or platinum by ALD. Our study provides a guide for the understanding of synergistic nature in bicomponent and bifunctional catalysts.
机译:由于难以构建明确定义的催化体系,双组分催化剂的协同性质仍然是一个具有挑战性的问题。在这里,我们通过设计一系列紧密接触的CoOxPt / TiO2和空间分离的CoOx / TiO2 / Pt催化剂,通过原子层沉积(ALD)设计了一系列选择性接触的CoOx-Pt催化剂协同效应的起源。对于CoOx / TiO2 / Pt,CoOx和铂被二氧化钛纳米管的壁隔开,并且可以精确地调整CoOx-Pt的亲密度。像CoOxPt / TiO2一样,CoOx / TiO2 / Pt对肉桂醇的选择性也比单金属TiO2 / Pt高,这表明CoOx-Pt纳米级亲密度几乎对选择性没有影响。选择性的提高归因于氢扩散的促进导致氧空位的增加。此外,通过ALD选择性覆盖CoOx或铂,铂-氧空位界面位点被鉴定为活性位点。我们的研究为理解双组分和双功能催化剂的协同性质提供了指南。

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