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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Structures and Mechanisms of Water Adsorption on ZnO(0001) and GaN(0001) Surface
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Structures and Mechanisms of Water Adsorption on ZnO(0001) and GaN(0001) Surface

机译:ZnO(0001)和GaN(0001)表面的水吸附结构与机理

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The adsorption structures and mechanisms of water adsorption on ZnO(0001) and GaN(0001) surface are investigated by using the first-principles methods. It is found that the stable adsorption structure at full monolayer (ML) coverage is (2 X 1) reconstructed. A (2 X 1) molecular adsorption is definite for ZnO, and a (2 X 1) dissociative adsorption is also possible for GaN. For these structures the hydrogen bonds between adsorbates are significant besides the covalent interaction with substrate. For the coverage below 0.5 ML for GaN and 0.25 ML for ZnO, the individually adsorbed H2O can easily decompose to OH and H. Both covalent and electrostatic attractions contribute to the stability of dissociative adsorption. For the coverage between the above two cases, molecular adsorption is found to be stable in theory, but the real structure may be greatly dependent on the chemical condition. These results give a detailed description of the interaction between the first water adlayer and ZnO(GaN)(0001) surface.
机译:采用第一性原理研究了ZnO(0001)和GaN(0001)表面的水吸附结构和机理。发现在全单层(ML)覆盖下稳定的吸附结构被重建(2 X 1)。 ZnO的分子吸附为(2 X 1),而GaN的分子吸附为(2 X 1)。对于这些结构,除了与底物的共价相互作用外,被吸附物之间的氢键也很重要。对于GaN小于0.5 ML和ZnO小于0.25 ML的覆盖率,单独吸附的H2O容易分解为OH和H。共价和静电引力都有助于离解吸附的稳定性。对于以上两种情况之间的覆盖,理论上发现分子吸附是稳定的,但实际结构可能在很大程度上取决于化学条件。这些结果详细描述了第一水添加层与ZnO(GaN)(0001)表面之间的相互作用。

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