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A density functional theory study of CO oxidation on Ru(0001) at low coverage

机译:低覆盖率下Ru(0001)上CO氧化的密度泛函理论研究

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We have performed ab initio density functional theory calculations with the generalized gradient approximation to investigate CO oxidation on Ru(0001). Several reaction pathways and transition states are identified. A much higher reaction barrier compared to that on Pt(111) is determined, confirming that the Ru is very inactive for CO oxidation under UHV conditions. The origin of the reaction barrier was analyzed. It is found that in the transition state the chemisorbed O atom sits in an unfavorable bonding site and a significant competition for bonding with the same substrate atoms occurs between the CO and the chemisorbed O, resulting in the high barrier. Ab initio molecular dynamics calculations show that the activation of the chemisorbed O atom from the initial hcp hollow site (the most stable site) to the bridge site is the crucial step for the reaction. The CO oxidation on Ru(0001) via the Eley-Rideal mechanism has also been investigated. A comparison with previous theoretical work has been made. (C) 2000 American Institute of Physics. [S0021-9606(00)31223-5]. [References: 38]
机译:我们已经使用广义梯度近似进行了从头算密度函数理论计算,以研究Ru(0001)上的CO氧化。确定了几种反应途径和过渡态。确定了与Pt(111)相比更高的反应势垒,证实了Ru在UHV条件下对于CO氧化非常惰性。分析了反应屏障的起源。已经发现,在过渡态中,化学吸附的O原子位于不利的键合位置,并且在CO和化学吸附的O之间发生了与相同底物原子的显着竞争,从而导致了高阻隔。从头算分子动力学计算表明,化学吸附的O原子从初始hcp空心位点(最稳定的位点)到桥键位的活化是反应的关键步骤。还研究了通过Eley-Rideal机理在Ru(0001)上的CO氧化。与以前的理论工作进行了比较。 (C)2000美国物理研究所。 [S0021-9606(00)31223-5]。 [参考:38]

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