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Structure of Ethene Adsorption Sites on Supported Metal Catalysts from in Situ XANES Analysis

机译:原位XANES分析在负载型金属催化剂上乙烯吸附位的结构

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The structures of the catalytically active sites in supported metal catalysts are a long sought after goal. In this study, XAS has been used to establish these structures. The ethene-induced changes in the XAS spectra as a function of temperature and pressure were correlated to changes in the adsorption mode of the hydrocarbon. At low temperature, ethene was adsorbed in on-top (π) and bridged (di-σ) sites on small platinum clusters. Below room temperature, the adsorbed ethene was dehydrogenated to an ethylidyne species, which was adsorbed in threefold Pt sites. On larger clusters the dehydrogenation proceeded at higher temperature indicating a different reactivity. EXAFS results showed that changes in the geometrical structures were mainly due to (co)adsorbed hydrogen. Our results for platinum agree with those obtained using other techniques proving that detailed shape analysis of the L_3 edge XANES is a practical tool to determine the structure of the sites that are involved in bonding to reactants and intermediates. Application to gold and alloy catalysts showed that ethene induced a significant change in the electronic structure of gold nanoclusters that could be interpreted as ethene adsorbed on top of single gold atoms or in bridged sites. Ethene adsorbed on both platinum and gold in the bimetallic clusters.
机译:负载金属催化剂中催化活性位点的结构是长期追求的目标。在这项研究中,XAS已用于建立这些结构。 XAS光谱中乙烯诱导的温度和压力变化与烃吸附模式的变化相关。在低温下,乙烯被吸附在小铂簇上的顶部(π)和桥接(di-σ)位置。在室温以下,吸附的乙烯脱氢成乙炔物质,该乙炔被吸附在三重Pt位点上。在较大的簇上,脱氢在较高的温度下进行,表明反应性不同。 EXAFS结果表明,几何结构的变化主要归因于(共)吸附氢。我们的铂金结果与使用其他技术所得的结果一致,证明了对L_3边缘XANES的详细形状分析是确定与反应物和中间体键合的位点结构的实用工具。在金和合金催化剂上的应用表明,乙烯引起了金纳米团簇电子结构的显着变化,这可以解释为乙烯吸附在单个金原子的顶部或桥接位点。乙烯在双金属簇中同时吸附在铂和金上。

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