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关于原始及铂修饰的硫化亚锡单层上挥发性有机化合物检测的密度泛函理论研究

A DFT Study of Volatile Organic Compounds Detection on Pristine and Pt-Decorated SnS Monolayers.

作者信息

Wu Jiayin, Li Zhongbao, Luo Aiping, Xing Xiaobo

机构信息

School of Information and Optoelectronic Science and Engineering, South China Normal University, Guangzhou 510006, China.

School of Materials and Chemistry Engineering, Tongren University, Tongren 554300, China.

出版信息

Sensors (Basel). 2023 Aug 22;23(17):7319. doi: 10.3390/s23177319.

Abstract

Real-time monitoring of volatile organic compounds (VOCs) is crucial for both industrial production and daily life. However, the non-reactive nature of VOCs and their low concentrations pose a significant challenge for developing sensors. In this study, we investigated the adsorption behaviors of typical VOCs (CH, CH, and CH), on pristine and Pt-decorated SnS monolayers using density functional theory (DFT) calculations. Pristine SnS monolayers have limited charge transfer and long adsorption distances to VOC molecules, resulting in VOC insensitivity. The introduction of Pt atoms promotes charge transfer, creates new energy levels, and increases the overlap of the density of states, thereby enhancing electron excitation and improving gas sensitivity. Pt-decorated SnS monolayers exhibited high sensitivities of 241,921.7%, 35.7%, and 74.3% towards CH, CH, and CH, respectively. These values are 142,306.9, 23.8, and 82.6 times higher than those of pristine SnS monolayers, respectively. Moreover, the moderate adsorption energies of adsorbing CH and CH molecules ensure that Pt-decorated SnS monolayers possess good reversibility with a short recovery time at 298 K. When heated to 498 K, CH molecules desorbs from the surface of Pt-decorated SnS monolayer in 162.33 s. Our results indicate that Pt-decorated SnS monolayers could be superior candidates for sensing VOCs with high selectivity, sensitivity, and reversibility.

摘要

挥发性有机化合物(VOCs)的实时监测对工业生产和日常生活都至关重要。然而,VOCs的非反应性及其低浓度给传感器的开发带来了重大挑战。在本研究中,我们使用密度泛函理论(DFT)计算研究了典型VOCs(CH、CH和CH)在原始和铂修饰的SnS单层上的吸附行为。原始SnS单层对VOC分子的电荷转移有限且吸附距离长,导致对VOC不敏感。铂原子的引入促进了电荷转移,产生了新的能级,并增加了态密度的重叠,从而增强了电子激发并提高了气敏性。铂修饰的SnS单层对CH、CH和CH的灵敏度分别高达241,921.7%、35.7%和74.3%。这些值分别比原始SnS单层高142,306.9、23.8和82.6倍。此外,吸附CH和CH分子的适度吸附能确保铂修饰的SnS单层在298 K下具有良好的可逆性和较短的恢复时间。当加热到498 K时,CH分子在162.33 s内从铂修饰的SnS单层表面解吸。我们的结果表明,铂修饰的SnS单层可能是用于高选择性、高灵敏度和高可逆性检测VOCs的优异候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbe8/10490194/abde472bd11c/sensors-23-07319-g001.jpg

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