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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Ab initio reaction path analysis of benzene hydrogenation to cyclohexane on Pt(111)
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Ab initio reaction path analysis of benzene hydrogenation to cyclohexane on Pt(111)

机译:Pt(111)上苯加氢制环己烷的从头算反应路径分析

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First-principles density functional theory calculations were performed to obtain detailed insight into the mechanism of benzene hydrogenation over Pt(111). The results indicate that benzene hydrogenation follows a Horiuti-Polanyi scheme which involves the consecutive addition of hydrogen adatoms. A first-principles-based reaction path analysis indicates the presence of a dominant reaction path. Hydrogenation occurs preferentially in the meta position of a methylene group. Cyclohexadiene and cyclohexene are expected to be at best minor products, since they are not formed along the dominant reaction path. The only product that can desorb is cyclohexane. Along the dominant reaction path, two categories of activation energies are found: lower barriers at similar to75 kJ/mol for the first three hydrogenation steps, and higher barriers of similar to88 kJ/mol for steps four and six, where hydrogen can only add in the ortho position of two methylene groups. The highest barrier at 104 kJ/mol is calculated for the fifth hydrogenation step, which may potentially be the rate-determining step. The high barrier for this step is likely the result of a rather strong C-(HPt)-Pt-... interaction in the adsorbed reactant state (1,2,3,5-tetrahydrobenzene*) which increases the barrier by similar to15 kJ/mol. Benzene and hydrogen are thought to be the most-abundant reaction intermediates.
机译:进行了第一性原理密度泛函理论计算,以获得对Pt(111)上苯加氢机理的详细了解。结果表明,苯加氢遵循Horiuti-Polanyi方案,该方案涉及连续添加氢原子。基于第一原理的反应路径分析表明存在主要反应路径。氢化优先发生在亚甲基的间位。环己二烯和环己烯最多只能是次要产物,因为它们不是沿着主要的反应路径形成的。唯一可以解吸的产品是环己烷。沿着主要反应路径,发现了两类活化能:对于前三个氢化步骤,较低的势垒约为75 kJ / mol,对于第四和第六步,较高的势垒约为88 kJ / mol,其中氢只能添加两个亚甲基的邻位。对于第五个氢化步骤,计算出104 kJ / mol的最高势垒,这可能是决定速率的步骤。此步骤的高阻隔性很可能是在吸附的反应物状态(1,2,3,5-四氢苯*)中相当强的C-(HPt)-Pt -...相互作用的结果,使阻隔性增加了约15 kJ /摩尔苯和氢被认为是最丰富的反应中间体。

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