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Adsorption characteristic of Rh-doped MoSe_2 monolayer towards H_2 and C_2H_2 for DGA in transformer oil based on DFT method

机译:DFT法研究掺Rh的MoSe_2单分子膜对DGA在变压器油中对H_2和C_2H_2的吸附特性

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摘要

Density functional theory (DFT) method was performed to investigate the adsorption behavior of Rh-doped MoSe2 (Rh-MoSe2) monolayer towards H-2 and C2H2 in transformer oil. Density of state, electron localization function and charge density difference were analyzed to study the electronic behavior of Rh-MoSe2 monolayer upon gas adsorption. Meanwhile, the desorption performance analysis was conducted as well to determine the recyclability of our proposed material for sensing application. It is found that, Rh-MoSe2 monolayer behaves good adsorption and desorption performances upon H-2 molecule, which allows its exploration of H-2 sensor at room temperature. On the other hand, the inferior desorption behavior of Rh-MoSe2 monolayer with poor reversibility upon C2H2 molecule (1.65 x 10(15 )s at 298 K) make it one-off operation for C2H2 detection. However, its potential adsorbent application could be awaken to scavenge C2H2 impurity from transformer oil, which offers another prospective alternative to guarantee the stable operation of transformers. At room temperature, it is found that Rh-MoSe2 monolayer has superior response for H-2 and C2H2 detection provided the sensitivity of - 98.56% and - 99.63%, respectively. Moreover, frontier molecular orbital theory is employed to confirm the sensing mechanism of Rh-MoSe2 monolayer upon two gases, according to the increased energy gaps that indicate the reduced conductivity after gas adsorption. From this aspect, our theoretical calculations in this paper would be beneficial to provide a novel insight into the application of Rh-MoSe2 monolayer in engineering research.
机译:采用密度泛函理论(DFT)方法研究了掺Rh的MoSe2(Rh-MoSe2)单层膜对变压器油中H-2和C2H2的吸附行为。分析了态密度,电子定位功能和电荷密度差,以研究Rh-MoSe2单层在气体吸附后的电子行为。同时,还进行了脱附性能分析,以确定我们提出的用于传感应用的材料的可回收性。结果发现,Rh-MoSe2单分子膜对H-2分子具有良好的吸附和解吸性能,这使其在室温下可以探测H-2传感器。另一方面,Rh-MoSe2单分子膜对C2H2分子的可逆性较差(在298 K下为1.65 x 10(15)s),其解吸性能较差,因此只能一次性进行C2H2检测。然而,可以唤醒其潜在的吸附剂应用以清除变压器油中的C2H2杂质,这为保证变压器的稳定运行提供了另一种前途的选择。在室温下,发现Rh-MoSe2单层膜对H-2和C2H2的检测具有出色的响应性,灵敏度分别为-98.56%和-99.63%。此外,根据增加的能隙表示气体吸附后电导率降低,利用前沿分子轨道理论确定了Rh-MoSe2单层对两种气体的传感机理。从这一方面来看,本文的理论计算将有助于对Rh-MoSe2单层在工程研究中的应用提供新颖的见解。

著录项

  • 来源
    《Applied Surface Science》 |2019年第1期|930-937|共8页
  • 作者单位

    Xian XD Transformer Co Ltd, Xian 701177, Shaanxi, Peoples R China|Chongqing Univ, State Key Lab Power Transmiss Equipment & Syst Se, Chongqing 400044, Peoples R China;

    State Grid Shandong Elect Power Maintenance Co, Jinan 250118, Shandong, Peoples R China;

    Tongji Univ, Dept Geotech Engn, Shanghai 200092, Peoples R China;

    Cent S Univ, Traff & Transportat Engn, Changsha 410083, Hunan, Peoples R China;

    Xian XD Transformer Co Ltd, Xian 701177, Shaanxi, Peoples R China;

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

    Rh-doped MoSe2; Transformer oil; DFT method; Dissolved gases;

    机译:掺铑MoSe2变压器油DFT法溶解气体;

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