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Molecular Understanding of Enyne Hydrogenation over Palladium and Copper Catalysts

机译:钯和铜催化剂对enyne氢化的分子理解

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Partial hydrogenation of unsaturated hydrocarbons comprises an important family of reactions that are applied in many industrial sectors. Understanding the hydrogenation of polyunsatured and polyunsaturated compounds on heterogeneous catalysts at its molecular level remains a challenging milestone to fine-tune the product distribution. Our study presents a detailed mechanistic analysis of the gas phase hydrogenation of vinylacetylene (1-butene-3-yne) and valylene (2-methyl-1-butene-3-yne) over palladium and copper catalysts. These two metals are selected owing to their pronounced differences in continuous flow catalytic tests at ambient pressure. The chemoselectivity, regioselectivity, isomerization, and oligomerization patterns measured in a broad range of feed hydrogen/hydrocarbon ratios are rationalized by density functional theory simulations. An extended BronstedEvansPolanyi relationship for both substrates and active metals is found for the hydrogenation processes. The identified factors that govern selectivity are similar to those identified for smaller C2 and C3 compounds and, thus, a means of systematization to other polyunsaturated compounds is opened up.
机译:不饱和烃的部分氢化包括在许多工业部门应用的重要反应家族。理解在其分子水平下的多次催化剂上的多不饱和化合物的氢化和多不饱和化合物仍然是微调产物分布的挑战性的里程碑。我们的研究提出了对亚乙烯基乙炔(1-丁烯-3-炔酮)和丙烯(2-甲基-1-丁烯-3-炔酮)的气相氢化在钯和铜催化剂上的详细机械分析。由于它们在环境压力下连续流动催化试验的显着差异而选择这两种金属。在宽范围的进料氢/烃比中测量的化学选择性,区域选择性,异构化和低聚理化模式通过密度泛函理论模拟合理化。对氢化方法发现了对底物和活性金属的扩展布朗斯特雷德凡人的关系。控制选择性的鉴定因子与较小的C2和C3化合物鉴定的因素类似,因此打开对其他多不饱和化合物的系统化方法。

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