论文标题
为什么超快光诱导的CO解吸在RU上的氧化中占主导地位(0001)
Why Ultrafast Photo-induced CO Desorption Dominates over Oxidation on Ru(0001)
论文作者
论文摘要
RU上的CO氧化(0001)是一个长期的反应例子,该反应在超高真空中被热禁止,可以被飞秒激光脉冲激活。尽管具有相关性,但光诱导的氧化过程的精确动力学以及竞争CO摄影的主要作用背后的原因尚不清楚。在这里,我们使用具有电子摩擦的Ab Inti算分子动力学,该动力学解释了激光产生的高度激发和未平衡的系统来研究这两种反应。我们的模拟成功地重现了主要的实验发现:光诱导的氧化和解吸的存在,对氧化分支比率的大解吸以及O K-边缘X射线吸收光谱的变化归因于氧化过程的初始阶段。现在,我们能够详细监测高度激发系统中发生的超快脱附和CO氧化,并解散导致意外惰性的原因,以使原本有力地有利于氧化。
CO oxidation on Ru(0001) is a long-standing example of a reaction that, being thermally forbidden in ultra-high vacuum, can be activated by femtosecond laser pulses. In spite of its relevance, the precise dynamics of the photo-induced oxidation process as well as the reasons behind the dominant role of the competing CO photo-desorption remain unclear. Here we use ab initio molecular dynamics with electronic friction that account for the highly excited and non-equilibrated system created by the laser to investigate both reactions. Our simulations successfully reproduce the main experimental findings: the existence of photo-induced oxidation and desorption, the large desorption to oxidation branching ratio, and the changes in the O K-edge X-ray absorption spectra attributed to the initial stage of the oxidation process. Now, we are able to monitor in detail the ultrafast CO desorption and CO oxidation occurring in the highly-excited system and to disentangle what causes the unexpected inertness to the otherwise energetically favored oxidation.