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Effect of surface phosphorus on the oxidative dehydrogenation of ethane: A first-principles investigation

机译:表面磷对乙烷氧化脱氢的影响:第一性原理研究

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Oxidative dehydrogenation (ODH) of small-chain alkanes has the potential to displace thermal cracking as the preferred method of light olefin production. Many heterogeneous catalysts for the ODH reaction have been discussed in the literature, including oxides, vanadates, and phosphates of rare earth and transition metals. Our experiments and the literature indicate that for most of these catalysts, including silica gel and alumina, a phosphorus-enriched surface enhances the ODH yield of ethane to ethylene. To understand the role of P, the ODH reactions were simulated on a silica surface, with and without P, using the density functional theory code DMol(3) in a periodic supercell. Optimized structures for all intermediates as well as transition states were obtained for full catalytic cycles. The simulations reveal that activation barriers for the rate-limiting steps are lowered by similar to10 kcal/mol in the presence of P. The decrease results from a transition state in which the P atom remains quasi-5-valent and fourfold coordinated. (C) 2002 American Institute of Physics. [References: 74]
机译:作为轻质烯烃生产的优选方法,小链烷烃的氧化脱氢(ODH)具有取代热裂化的潜力。在文献中已经讨论了许多用于ODH反应的非均相催化剂,包括稀土金属和过渡金属的氧化物,钒酸盐和磷酸盐。我们的实验和文献表明,对于大多数此类催化剂,包括硅胶和氧化铝,富磷表面可提高乙烷向乙烯的ODH产率。为了了解P的作用,在周期性超级电池中使用密度泛函理论代码DMol(3)在有或没有P的二氧化硅表面上模拟了ODH反应。在整个催化循环中,获得了所有中间体的最佳结构以及过渡态。模拟结果表明,在存在P的情况下,限速步骤的激活势垒降低了约10 kcal / mol。降低的原因是过渡态,其中P原子保持准5价且四重配位。 (C)2002美国物理研究所。 [参考:74]

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