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基于第一性原理统计力学研究的钌和铑上费托合成中选择性开关的起源

Origin of selectivity switch in Fischer-Tropsch synthesis over Ru and Rh from first-principles statistical mechanics studies.

作者信息

Chen Jia, Liu Zhi-Pan

机构信息

Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Department of Chemistry, Fudan University, Shanghai, China 200433.

出版信息

J Am Chem Soc. 2008 Jun 25;130(25):7929-37. doi: 10.1021/ja7112239. Epub 2008 May 29.

Abstract

For its unique position in chemical industry, Fischer-Tropsch (FT) synthesis has been a hot subject in heterogeneous catalysis. Due to its great complexity in product distribution, it remains unclear how to maximally convert syngas to long-chain hydrocarbons. By combining extensive DFT calculations with grand canonical Monte Carlo simulations, this work examines the key elementary steps in FT synthesis over Ru and Rh surfaces, including CO dissociation, C/C coupling, and hydrogenations. The origin of the relationship between activity and selectivity of catalysts is revealed based on the calculated reaction rate at working temperatures, in which the catalytic role of surface steps as the center of accumulating surface CH(x) species is highlighted. This theoretical work demonstrates that the ability to dissociate CO under carbon-rich conditions is the key requirement for a good FT catalyst. The RC + C (R = alkyl or H) pathway occurring at surface steps may be a general mechanism for FT chain propagation on transition metals.

摘要

费托(FT)合成因其在化学工业中的独特地位,一直是多相催化领域的研究热点。由于其产物分布极为复杂,如何将合成气最大程度地转化为长链烃仍不清楚。通过将广泛的密度泛函理论(DFT)计算与巨正则蒙特卡罗模拟相结合,本研究考察了钌(Ru)和铑(Rh)表面上费托合成的关键基元步骤,包括一氧化碳解离、碳/碳偶联以及氢化反应。基于在工作温度下计算得到的反应速率,揭示了催化剂活性与选择性之间关系的根源,其中突出了表面台阶作为表面CH(x)物种积累中心的催化作用。这项理论研究表明,在富碳条件下解离一氧化碳的能力是优良费托催化剂的关键要求。在表面台阶处发生的RC + C(R = 烷基或氢)途径可能是费托链在过渡金属上增长的普遍机制。

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