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Two-dimensional Janus monolayers of MoSSe as promising sensor towards selected adulterants compounds

机译:Mosse的二维Janus单层作为选定的掺杂剂化合物的承诺传感器

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摘要

Selective detection of different types of adulterants present in food items is necessary and efficient nano sensors for such applications are of vital importance. In this study, recently synthesized two-dimensional (2D) Janus monolayer of MoSSe has been explored to detect various food adulterants like formalin (CH2O), histamine (C5H9N3) and hydrogen peroxide (H2O2). By using first principles density functional theory calculations, we find that the incident adulterants weakly bind with pristine MoSSe, however the adsorption energies (E-ads) are significantly improved upon vacancy defects and foreign elements substitutions. Furthermore, the sensing mechanism is studied in presence of water for the applications in practical working conditions. Energetic evaluation shows that both H2O2 and histamine result into stronger E(ads )as compared to formalin over defect induced MoSSe; whereas, the presence of water further enhances the adsorption of H2O2. In addition to the adsorption characteristics, charge transfer mechanism and electronic structures of pristine and defect induced MoSSe monolayers upon the exposure of studied adulterants have also been studied. Boltzmann thermochemical statistics further verified the explicabilities of pristine and defected MoSSe monolayers for in vitro test of adulterants in food products. Suitable E-ads values and measurable changes in the electronic properties indicate the potential of MoSSe monolayers as efficient nano sensors towards selected adulterants for their applications in food processing, biotechnology, healthcare and medical laboratories.
机译:选择性检测食品中存在的不同类型的掺杂剂是必要的,有效的纳米传感器,这些应用是至关重要的。在本研究中,最近合成的二维(2D)MOSSE的Janus单层,以检测福尔马林(CH2O),组胺(C5H9N3)和过氧化氢(H2O2)等各种食物掺杂物。通过使用第一原理函数理论计算,我们发现入射掺子剂与原始Mosse弱结合,但是在空位缺陷和外来元素取代时吸附能量(E-ADS)显着改善。此外,在实际工作条件下,在水的情况下在水的情况下研究感测机理。优势评价表明,与福尔马林造成缺陷诱导的MOSSE相比,H 2 O 2和组胺均导致更强的E(ADS);鉴于水的存在进一步增强了H 2 O 2的吸附。除了吸附特性,还研究了在研究掺杂剂暴露时,原始和缺陷诱导的MOSSE单层的电荷转移机制和电子结构。 Boltzmann热化学统计进一步验证了原始和缺陷Mosse单层的脱敏性,用于食品掺杂剂的体外试验。合适的E-ADS值和电子特性的可测量变化表明MOSSE单层作为朝向所选掺杂剂的高效纳米传感器的潜力,用于选择食品加工,生物技术,医疗实验室中的应用。

著录项

  • 来源
    《Applied Surface Science》 |2021年第15期|148590.1-148590.8|共8页
  • 作者单位

    Hindustan Inst Technol & Sci Ctr Clean Energy & Nano Convergence Chennai 603103 Tamil Nadu India;

    Hindustan Inst Technol & Sci Dept Chem Engn Chennai 603103 Tamil Nadu India;

    Konkuk Univ Dept Phys Seoul 05029 South Korea;

    Konkuk Univ Dept Phys Seoul 05029 South Korea;

    Uppsala Univ Dept Phys & Astron Condensed Matter Theory Grp Box 516 S-75120 Uppsala Sweden|Royal Inst Technol KTH Dept Mat & Engn Appl Mat Phys S-10044 Stockholm Sweden;

    Univ Western Australia Sch Mol Sci Perth WA 6009 Australia|Univ Queensland Sch Chem Engn Brisbane Qld 4072 Australia;

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

    Adulterants; Janus monolayer; Adsorption; Energetic analysis; Electronic structures;

    机译:掺杂剂;Janus单层;吸附;能量分析;电子结构;

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