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Highly selective hydrogenation of butadiene on Pt/Sn alloy elucidated by first-principles calculations

机译:通过第一性原理阐明了在Pt / Sn合金上丁二烯的高度选择性加氢

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Reaction pathways have been explored with periodic DFT calculations in order to understand the origin of the high selectivity for the hydrogenation of 1,3-butadiene on the Pt_2Sn/Pt(1 1 1)-(√3 × √3)R30° surface alloy. The adsorption structures of butadiene, 1- and 2-butenes and all the intermediate species have been studied. Compared to the reference catalyst Pt(1 1 1), there is a change both in geometries and in relative energies: for instance, the best adsorption mode of butadiene is cis 1,4-di-σ-2,3-π, while it is trans 1,2,3,4-tetra-σ on Pt(1 1 1). On the alloy, all the adsorption energies are reduced compared to pure platinum, and the adsorption structures implying many PtC bonds are more destabilized. The different pathways leading to partial hydrogenation products (1-butene, 2-butene) or other intermediate surface species (1,3- and 1,4-metallacycles) have been explored. The first hydrogenation step is clearly preferred at a terminal carbon, and the further hydrogenation to 1-butene has by far the lowest barrier. Other pathways exhibit larger activation barriers, particularly those leading to metallacycles, which is the key to explain the high selectivity to butene, in contrast to Pt(1 1 1). The role of tin is dual: a role of site blocking that forces unselective pathways to adopt distorted, high-energy transition states and a role of ligand that weakens the molecular adsorption and allows decoordination of double bonds prior to the hydrogenation, which decreases the energy barriers for the selective pathway to butene.
机译:为了了解在Pt_2Sn / Pt(1 1 1)-(√3×√3)R30°表面合金上1,3-丁二烯加氢的高选择性的起源,已经通过定期DFT计算探索了反应途径。 。研究了丁二烯,1-丁烯和2-丁烯以及所有中间物种的吸附结构。与参考催化剂Pt(1 1 1)相比,几何形状和相对能量都有变化:例如,丁二烯的最佳吸附模式为顺式1,4-二-σ-2,3-π,而它是Pt(1 1 1)上的trans1,2,3,4-tetra-σ。在合金上,与纯铂相比,所有吸附能都降低了,并且暗示许多PtC键的吸附结构更加不稳定。已经探索了导致部分氢化产物(1-丁烯,2-丁烯)或其他中间表面物质(1,3-和1,4-金属环)的不同途径。显然优选在末端碳上进行第一氢化步骤,并且进一步氢化成1-丁烯具有最低的阻挡层。其他途径表现出更大的活化障碍,特别是导致金属环的那些,这是解释与Pt(1 1 1)相比对丁烯具有高选择性的关键。锡的作用是双重的:位点阻断的作用迫使非选择性途径采用扭曲的高能过渡态,而配体的作用则削弱了分子的吸附并允许双键在氢化之前解配,从而降低了能量。丁烯选择性途径的障碍。

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