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A novel theoretical study of thermally-induced reaction and vibration dynamics of methanol dissociative adsorption onto a Si(001) surface

机译:甲醇离灭吸附在Si(001)表面上的热诱导反应和振动动力学的新颖理论研究

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摘要

The thermally-induced reaction and vibration dynamics of methanol (CH3OH(g)) dissociative adsorption onto a Si(001) surface have been studied by combining density functional theory (DFT)-based molecular dynamics (DFTMD) simulations with a molecular adsorption sampling scheme and a wavelet transform for investigating the reaction pathways and corresponding vibrational spectra. Based on the simulated results, CH3OH(g) firstly approaches the Si(001) surface to interact with the buckled-down Si atom at temperatures from 100 K to 300 K, and then the O-H bond of CH3OH((ads)) breaks within 10 picoseconds only at 300 K due to the elongation of the O-H bond. Furthermore, the time-resolved vibrational spectrum constructed by a wavelet transform of the structural coordinate auto-correlation function (WT-SCAF) illustrates that the O-H stretching mode of CH3OH(ads) shifts to below 3400 cm(-1) when the H atom of the O-H bond is closer to the buckled-up Si atom of the adjacent dimers. This is due to the fact that the noticeable attractive force between the H atom of the O-H bond and the dangling bond at the buckled-up Si atom of the adjacent dimers prompts the O-H bond to break and then leads to both CH3O and H species adsorbed on the buckled-down and buckled-up Si atoms, respectively.
机译:热诱导反应和甲醇的振动动力学(CH 3 OH(克))解离吸附到的Si(001)表面已经研究通过组合密度泛函理论(DFT)为基础的分子动力学(DFTMD)模拟用分子吸附的采样方案和小波变换用于研究反应途径和相应的振动光谱。基于模拟结果,CH 3 OH(G)首先接近内生长的Si(001)表面,以与所述屈曲向下在温度的Si原子从100 K至300°K,然后CH 3 OH的OH键相互作用((广告))断裂仅在300K 10个皮秒由于OH键的伸长率。此外,通过一个构成的时间分辨振动光谱小波变换的结构坐标自相关函数的(WT-SCAF)示出了OH拉伸CH 3 OH(广告)的模式转移到下面3400厘米(-1)当H原子OH键的更靠近相邻的二聚体的扣向上的Si原子。这是由于这样的事实,即OH键的氢原子,并在扣向上相邻的二聚体提示OH键断裂的Si原子上,然后导致两者CH3O和H物质吸附的悬空键之间的显着的吸引力在压曲向下和扣向上Si原子,分别。

著录项

  • 来源
    《RSC Advances》 |2016年第2期|共12页
  • 作者

    Lee Yung Ting; Lin Jyh Shing;

  • 作者单位

    Tamkang Univ Dept Chem New Taipei 25137 Taiwan;

    Tamkang Univ Dept Chem New Taipei 25137 Taiwan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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