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Highly sensitive and selective sensing properties of modified green phosphorene monolayers towards SF_6 decomposition gases

机译:改性绿色磷烯单分子层对SF_6分解气体的高灵敏度和选择性感测特性

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摘要

Gas sensing properties of pristine, defective and heteroatom substituted green phosphorene (GP) monolayers towards SF6 components such as H2S, SO2, SO2F2, SOF2 are investigated by using van der Waals corrected density function theory calculations. The adsorptions of H2S and SOF2 on pristine GP are found to be exothermic with weak binding energies (E-b) of- 0.065 and - 0.017 eV respectively, whereas the interactions of SO2 and SO2F2 are endothermic. We found that various vacancy defects and heteroatom substitutions enhance the E-b values of H2S, SO2, SO2F2 and SOF2 to - 0.84, - 1.04, - 0.40 and - 0.73 eV, respectively which are within desired range for efficient gas sensing applications. Presence of selected substituents (Al, B, C, S, Si) and vacancy defects result into measurable variations in electronic properties of GP upon the exposure of sulphur containing gases. We found that B- and S-doped GP systems show selectivity towards H2S and SO2, with E-b values of - 0.57eV for H2S and - 1.03eV for SO2. We believe that modified GP has potential to be used as excellent sensing material towards SF6 decomposition gases.
机译:利用范德华校正密度函数理论计算研究了原始的,有缺陷的和杂原子取代的绿色磷(GP)单层对诸如H2S,SO2,SO2F2,SOF2等SF6组分的气敏特性。发现H2S和SOF2在原始GP上的吸附是放热的,其弱结合能(E-b)分别为-0.065和-0.017 eV,而SO2和SO2F2的相互作用是吸热的。我们发现,各种空位缺陷和杂原子取代将H2S,SO2,SO2F2和SOF2的E-b值分别提高到-0.84,-1.04,-0.40和-0.73 eV,这在有效气体传感应用的期望范围内。选定的取代基(Al,B,C,S,Si)的存在和空位缺陷会导致GP的电子性能随含硫气体的暴露而发生可测量的变化。我们发现,B和S掺杂的GP系统对H2S和SO2表现出选择性,H-S的E-b值为-0.57eV,SO2的E-b值为-1.03eV。我们相信,修饰的GP有潜力用作对SF6分解气体的优良传感材料。

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  • 来源
    《Applied Surface Science》 |2020年第may15期|145641.1-145641.9|共9页
  • 作者

  • 作者单位

    Natl Chiao Tung Univ Dept Mech Engn Hsinchu Taiwan;

    Konkuk Univ Dept Phys Seoul 05029 South Korea;

    Univ Queensland Sch Biol Sci Brisbane Qld 4072 Australia;

    Univ Western Australia Sch Mol Sci Perth WA 6009 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adsorption; Sensing; Monolayer; Defects; Doping;

    机译:吸附;感应;单层缺陷;兴奋剂;

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