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Unravelling the key factors in the chlorine-promoted epoxidation of ethylene over a silver–copper oxide nanocatalyst

机译:解体的关键因素chlorine-promoted的乙烯环氧化反应采用化学氧化nanocatalyst

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Ethylene oxide is one of the most important raw materials in the chemical industry, with an annual production close to 35 million metric tons. Despite its importance, to date, no metal has been found that can compete with the original silver bulk material catalyst discovered in 1931. Recently, a few copper and copper–silver based nanostructures have demonstrated remarkable selectivity and activity, especially when coupled with an industrial chlorine promoter. The present work evaluates the mechanistic role of chlorine as an active promoter of the selective oxidation of ethylene to ethylene oxide in the presence of a silver–copper oxide hybrid nanocatalyst (AgCuO). Experimental kinetic studies combined with density functional theory (DFT) calculations provide insight into the influence that Ag/CuO-supported chlorine atoms have over the ethylene epoxidation reaction. Remarkably, the typically described indirect route via the formation of an oxametallacycle (OMC) is also accompanied by a direct route. Furthermore, the presence of chlorine seems to facilitate a more favorable adsorption energy for ethylene oxide (EO) than for acetaldehyde (AA), the main reaction by-product. As a result, complete oxidation of EO can be further prevented in the presence of this AgCuO hybrid heteronanostructure.
机译:环氧乙烷是最重要的原料之一材料在化学工业中,用一个年产量近3500万公吨吨。已经发现,与原来的竞争吗散装材料银催化剂在1931年发现。最近,几个铜和copper-silver基础纳米结构展示了非凡的选择性和活动,特别是当耦合工业氯子。工作评估氯的机械作用积极促进剂的选择性氧化环氧乙烷的乙烯的存在一个采用化学氧化混合nanocatalyst(AgCuO)。用密度泛函理论(DFT)计算提供洞察的影响Ag / CuO-supported氯原子的乙烯环氧化反应。通常描述通过间接途径形成一个oxametallacycle (OMC)也伴随着直接路线。氯的存在似乎促进更多良好的环氧乙烷吸附能(EO)比乙醛(AA),主要的反应副产物。氧化的EO可以进一步阻止了这AgCuO混合

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