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Strain-induced water dissociation on supported ultrathin oxide films

机译:应变诱导的支撑超薄氧化膜的水解离

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Controlling the dissociation of single water molecule on an insulating surface plays a crucial role in many catalytic reactions. In this work, we have identified the enhanced chemical reactivity of ultrathin MgO(100) films deposited on Mo(100) substrate that causes water dissociation. We reveal that the ability to split water on insulating surface closely depends on the lattice mismatch between ultrathin films and the underlying substrate, and substrate-induced in-plane tensile strain dramatically results in water dissociation on MgO(100). Three dissociative adsorption configurations of water with lower energy are predicted, and the structural transition going from molecular form to dissociative form is almost barrierless. Our results provide an effective avenue to achieve water dissociation at the single-molecule level and shed light on how to tune the chemical reactions of insulating surfaces by choosing the suitable substrates.
机译:控制在绝缘表面上的单水分分子的解离在许多催化反应中起着至关重要的作用。在这项工作中,我们已经确定了沉积在Mo(100)底物上的超薄MgO(100)膜的增强的化学反应性,从而导致水解离。我们揭示了在绝缘表面上分割水的能力密切相关,取决于超薄膜和下面的基底之间的晶格失配,并且基底诱导的面内拉伸菌株显着导致MgO(100)上的水解离。预测了具有较低能量的水的三种分离吸附配置,并且从分子形式到分离形式的结构转变几乎是障碍。我们的结果提供了一种有效的途径,可以通过选择合适的基材来实现单分子水平下的水解分离,并在如何调整绝缘表面的化学反应。

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