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Highly reactive dissociative adsorption of hydrogen molecules on partially H-covered Si-(001) surfaces: A density-functional study

机译:氢分子在部分H覆盖的Si-(001)表面上的高反应性离解吸附:密度泛函研究

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Despite intensive research the atomistic reaction path leading to the dissociative adsorption of hydrogen molecules on a Si(001) substrate is still debated. In this paper density-functional calculations employing a generalized gradient approximation for the exchange-correlation functional will be presented for the interdimer reaction paths on both clean and H-precovered Si(001) surfaces. It turns out that silicon surface dimers with one of their two dangling bonds saturated with a hydrogen atom result in very reactive H-2-adsorption sites. The high reactivity is explained to be due to dangling-bond states close to the Fermi level, which can very efficiently hybridize with the antibonding 1s Sigma (u)* state of the H-2 molecule. This is analogous to the high reactivity of step sites on Si(001) vicinal surfaces discussed by Kratzer et nl. On the clean surface the calculations produce an adsorption-energy barrier for the interdimer reaction path which is even slightly smaller than the respective barrier for the common intradimer reaction path. Thus, provided its prefactor is not too small, the interdimer reaction path might be relevant for the sticking of H-2 on Si(001). [References: 41]
机译:尽管进行了深入的研究,但仍然争论导致氢分子在Si(001)衬底上解离吸附的原子反应路径。在本文中,将针对清洁和H覆盖的Si(001)表面上的二聚体反应路径,提出采用交换相关泛函的广义​​梯度近似的密度泛函计算。事实证明,具有两个悬空键之一且被氢原子饱和的硅表面二聚体会产生非常活泼的H-2-吸附位。解释了高反应性是由于接近费米能级的悬挂键状态,该悬挂键状态可以非常有效地与H-2分子的抗键1s Sigma(u)*杂交。这类似于Kratzer等人讨论的Si(001)邻近表面上台阶部位的高反应性。在干净的表面上,计算结果得出了二聚体间反应路径的吸附能垒,甚至比共同的二聚体内反应路径所对应的垒稍小。因此,如果其前提因素不太小,则二聚体间的反应路径可能与H-2在Si(001)上的粘附有关。 [参考:41]

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