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首页> 外文期刊>Integrated Ferroelectrics >Structural and Electronic Properties of Monolayer 1T-MoS_2 Phase, and Its Interaction with Water Adsorbed on Perfect, Single S-Vacated and MoS_2-Unit-Vacated Surface: Density Functional Theory Calculations
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Structural and Electronic Properties of Monolayer 1T-MoS_2 Phase, and Its Interaction with Water Adsorbed on Perfect, Single S-Vacated and MoS_2-Unit-Vacated Surface: Density Functional Theory Calculations

机译:单层1T-MoS_2相的结构和电子性质及其与吸附在完美,单S形和MoS_2单元形的表面上的水的相互作用:密度泛函理论计算

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Using density functional theory calculations with van der Waals dispersion corrections, we studied the structural and electronic properties of monolayer 1T-MoS_2, and how it interacts with water on perfect and vacancy-doped cases, which include single sulfur and MoS_2-unit vacancies. We first optimized and calculated its structural parameters and electronic properties and confirmed earlier reports suggesting its metastatic state and metallic electronic structure. Results show that adsorption sites on perfect surface bind water weakly while the opposite is true for vacancy sites adsorption. Climbing nudged elastic band calculations revealed that sulfur vacancy site could favorably dissociate water and evolve hydrogen with moderate energy cost, while significantly high energies are required for the same processes on MoS_2 unit vacancy. The results are important in supplementing efforts to find clean and renewable energy sources.
机译:使用范德华分散校正的密度泛函理论计算,我们研究了单层1T-MoS_2的结构和电子性质,以及在完美和空位掺杂的情况下(包括单硫和MoS_2-单元空位)它与水的相互作用。我们首先优化和计算了其结构参数和电子性能,并确认了较早的报道,表明其转移状态和金属电子结构。结果表明,理想表面上的吸附位与水的结合较弱,而空位吸附则相反。爬升微动的弹性带计算表明,硫空位可以有利地分解水并以适度的能源成本释放氢,而对于MoS_2单元空位的相同过程,则需要很高的能量。这些结果对于补充寻找清洁和可再生能源的努力非常重要。

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