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首页> 外文期刊>Applied Surface Science >Molecular adsorption studies of diethyl sulfide and ethyl methyl sulfide vapors on ζ-phosphorene nanoribbon - A first-principles insight
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Molecular adsorption studies of diethyl sulfide and ethyl methyl sulfide vapors on ζ-phosphorene nanoribbon - A first-principles insight

机译:硫化物硫化物和乙基甲基硫醚蒸汽对Ⅳ-磷烯纳米·纳米乙基乙基甲基硫化物的分子吸附研究 - 一种第一原理洞察力

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摘要

In the current inspection, the density functional theory method is adopted to scrutinize the sensing ability of the zeta-form of phosphorene nanoribbon (zeta-PNR) with respect to the chief vapors - diethyl sulfide (DES) and ethyl methyl sulfide (EMS), which are emitted from the sewage waste. First, the cohesive conformation energy of the zeta-PNR is determined to be - 5.852 eV per atom, the negative measure ensures the stable nature of the configuration. Next, the electronic properties for the pristine zeta-PNR and the chief vapors adsorbed zeta-PNR namely, the electron difference density, Band structure, and Projected Density of States spectrum are explored. Moreover, the surface assimilation properties for DES and EMS interacted zeta-PNR (valley, top, and hollow-positions) like the surface adsorption energy, average band gap modulation, and Bader charge transfer are evaluated. The findings recommend the feasible employment of zeta-form of phosphorene nanoribbon as a potent sensor to detect DES and EMS from the environment.
机译:在目前的检查中,采用密度泛函理论方法对磷烯纳米(Zeta-PNR)相对于主要蒸汽 - 二乙基硫醚(DES)和乙基甲基硫醚(EMS)进行审查磷烯纳米(Zeta-PNR)的感测能力。从污水废物中排出。首先,测定Zeta-PNR的粘性构象能量为-5.852 EV,负措施确保配置的稳定性。接下来,探讨了原始Zeta-PNR的电子性质和吸附Zeta-Pnr的主要蒸汽,即态谱的电子差异密度,带结构和投影密度。此外,评估DES和EMS的表面同化性能与表面吸附能量,平均带隙调制和獾电荷转移相互作用的DES和EMS互动的Zeta-PNR(谷,顶部和空心位置)。该研究结果建议Zeta形式的磷烯纳米氏菌作为有效传感器的可行性就业,以检测来自环境的DES和EMS。

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