兰州理工大学学报 ›› 2025, Vol. 51 ›› Issue (6): 1-8.

• 材料科学与工程 •    下一篇

TiO2石墨烯对SF6N2分解组分吸附的第一性原理

李宁瑞1, 刘冰冰1, 苟岩1, 孙伟1, 包艳艳*2, 李小强3   

  1. 1.国网甘肃省电力公司 超高压公司, 甘肃 兰州 730070;
    2.国网甘肃省电力公司 电力科学研究院, 甘肃 兰州 730070;
    3.兰州理工大学 材料科学与工程学院, 甘肃 兰州 730050
  • 收稿日期:2024-10-27 发布日期:2025-12-31
  • 通讯作者: 包艳艳(1990-),女,甘肃兰州人,高级工程师.Email:1076453621@qq.com
  • 基金资助:
    甘肃省科技计划(24JRRA754)

First-principle on adsorption of SF6/N2 decomposition components on the TiO2/Graphene

LI Ning-rui1, LIU Bing-bing1, GOU Yan1, SUN Wei1, BAO Yan-yan2, LI Xiao-qiang3   

  1. 1. Ultra High Voltage Company, State Grid Gansu Electric Power Company, Lanzhou 730070, China;
    2. Power Research Institute, State Grid Gansu Electric Power Company, Lanzhou 730070, China;
    3. School of Materials Science and Engineering, Lanzhou University of Technology, Lanzhou 730050, China
  • Received:2024-10-27 Published:2025-12-31

摘要: SF6/N2混合气体已成为绿色、稳定的SF6替代气体之一,准确检测并分析其特征分解组分具有重要的应用意义.基于第一性原理将性能优异的TiO2和石墨烯(GE)结合,构建TiO2/GE复合结构,探讨其对SF6/N2分解特征气体H2S、SO2、SOF2、SO2F2和NO2的吸附特性,对比研究吸附前后体系吸附能、静电势、LUMO和HOMO轨道、电子性质及功函数的变化规律和影响机制.结果表明:TiO2与石墨烯间存在电荷转移,其对SO2、SOF2、SO2F2和NO2的吸附作用较强;各吸附体系的LUMO-HOMO带隙存在差异,可根据解吸难易程度产生化学变量实现检测分析.TiO2/GE与气体分子存在较强的电子轨道交叠作用,且各吸附体系的功函数存在变动,可应用于栅电压可调的场效应传感器.

关键词: 第一性原理, 二氧化钛, 石墨烯, 气体吸附, SF6/N2

Abstract: SF6/N2 mixture gas has become one of the green and stable alternative gases of SF6 making the accurate detection and analysis of their characteristic decomposition components highly significant for practical applications. TiO2 with excellent performance was combined with graphene (GE) to construct a stable TiO2/GE composite structure based on the first-principle. The adsorption properties of SF6/N2 decomposition gases (H2S, SO2, SOF2, SO2F2 and NO2) by TiO2/GE were investigated. The variation rule and influencing mechanism of adsorption energy, electrostatic properties, LUMO and HOMO orbitals, electronic properties, and work function of the adsorption systems were systematically analyzed. The results showed that there is charge transfer between TiO2 and graphene, and the adsorption of TiO2/GE for SO2, SOF2, SO2F2, and NO2 is relatively strong. The LUMO-HOMO band gaps of different adsorption systems are different. The gases can be detected and analyzed by the chemical variables generated according to the degree of desorption difficulty. Moreover, TiO2/GE has strong electron orbital overlap with gas molecules, and the work function of each adsorption system are different, which can be applied to field-effect sensors with adjustable gate voltage.

Key words: first principle, titanium dioxide, graphene, gas adsorption, SF6/N2

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