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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >The adsorption of nitrogen oxides on noble metal-doped graphene: The first-principles study
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The adsorption of nitrogen oxides on noble metal-doped graphene: The first-principles study

机译:氮氧化物对贵金属掺杂石墨烯的吸附:第一原理研究

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The first-principles method based on density functional theory has been used to investigate the adsorption performance of NO/NO2 molecules on intrinsic, Ag-doped, Pt-doped and Au-doped graphene. Results show that graphene doped with Ag/Pt/Au has shorter final adsorption distance, larger adsorption energy and charge transfer amount with NO/NO2 molecules than intrinsic graphene, and the charge densities of doped graphene and NO/NO2 molecules overlap effectively. Therefore, doping graphene with noble metals can greatly enhance the adsorption between graphene and NO/NO2 molecules. Analysis also reveals that Au-doped graphene has the strongest adsorption effect on NO/NO2 molecules, followed by Ag-doped graphene, while Pt-doped graphene has the weakest role on the adsorption of NO/NO2 molecules. The work conducted in this research provides a theoretical guidance for the application of NO/NO2 gas sensors based on graphene.
机译:基于密度官能理论的第一原理方法已用于研究NO / NO2分子对固有,Ag掺杂,Pt掺杂和Au掺杂石墨烯的吸附性能。 结果表明,掺杂有Ag / Pt / Au的石墨烯具有较短的最终吸附距离,较大的吸附能量和电荷转移量,与本质石墨烯没有NO / NO2分子,以及掺杂石墨烯的电荷密度和无/ NO2分子有效重叠。 因此,具有贵金属的掺杂石墨烯可以大大提高石墨烯和NO2分子之间的吸附。 分析还揭示了Au-掺杂的石墨烯对NO / NO 2分子具有最强的吸附效果,然后是Ag掺杂的石墨烯,而PT掺杂的石墨烯在无/ NO 2分子的吸附中具有最弱作用。 本研究中进行的工作为基于石墨烯的NO / NO2气体传感器提供了一种理论指导。

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