Noble metal (Pt or Pd)-decorated atomically thin MoS2 as a promising material for sensing colorectal cancer biomarkers through exhaled breath

吸附 气体分析呼吸 材料科学 分子 苯甲醛 二硫化钼 贵金属 金属 纳米技术 化学 物理化学 有机化学 催化作用 色谱法 复合材料 冶金
作者
Aref Aasi,Sadegh Mehdi Aghaei,Balaji Panchapakesan
出处
期刊:International Journal of Computational Materials Science and Engineering [World Scientific]
卷期号:13 (01) 被引量:11
标识
DOI:10.1142/s2047684123500148
摘要

Early-stage disease and cancer diagnosis are of particular importance for effective patient identification as well as their treatment. Breath analysis is a promising method for this purpose which can help to detect disease biomarkers. Benzaldehyde and Indole gas molecules as members of volatile organic compounds (VOCs) are composed of a proportion of the exhaled breath and changes in the level of them from breath can be considered for colorectal cancer biomarkers. Due to these incentives, we scrutinized the sensing behavior of Molybdenum disulfide (MoS[Formula: see text] toward Benzaldehyde and Indole gas. We inspected the adsorption of the molecules on the pristine and Pd-, Pt-decorated MoS 2 by employing density functional nonequilibrium Green’s function (DFT-NEGF). It was disclosed that the molecules were weakly adsorbed upon the pristine MoS 2 . Howbeit, after the decoration of the surface, the adsorption energy and charge transfer of the molecules were improved greatly. On the other hand, the band gap was decreased after metal decoration. For example, adsorption energy of −2.37[Formula: see text]eV and band gap of 1.32[Formula: see text]eV were achieved by interaction of Indole with Pd-decorated MoS 2 and it can be desorbed under UV light and at temperature of 698[Formula: see text]K with recovery time of 12.8[Formula: see text]s. Ergo, our analysis would help us better understand the adsorption mechanism of Pd- and Pt-decorated MoS 2 -based gas sensors. It may open a new route in early disease detection and colorectal cancer monitoring.

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