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用于增强气体检测灵敏度的铜和铝修饰单层TiSe:一项密度泛函理论研究

Cu- and Al-Decorated Monolayer TiSe for Enhanced Gas Detection Sensitivity: A DFT Study.

作者信息

Xiao Landong, Guo Gencai, Zhang Mengyang, You Manqi, Luo Siwei, Guo Gang, He Chaoyu, Tang Chao, Zhong Jianxin

机构信息

Hunan Key Laboratory for Micro-Nano Energy Materials and Devices, Laboratory for Quantum Engineering and Micro-Nano Energy Technology, and School of Physics and Optoelectronics, Xiangtan University, Hunan 411105, China.

Foshan Green Intelligent Manufacturing Research Institute of Xiangtan University, Guangdong 528311, China.

出版信息

Langmuir. 2023 Dec 19;39(50):18631-18643. doi: 10.1021/acs.langmuir.3c03045. Epub 2023 Dec 8.

Abstract

The rapid industrial development has contributed to worsening global pollution, necessitating the urgent development of highly sensitive, cost-effective, and portable gas sensors. In this work, the adsorption of CO, CO, HS, NH, NO, NO, O, and SO gas molecules on pristine and Cu- and Al-decorated monolayer TiSe has been investigated based on first-principles calculations. First, the results of the phonon spectrum and ab initio molecular dynamics simulations demonstrated that TiSe is dynamically stable. In addition, compared to pristine TiSe (-0.029 to -0.154 eV), the adsorption energy of gas molecules (excluding CO) significantly decreased after decorated with Cu or Al (-0.212 to -0.977 eV in Cu-decorated TiSe, -0.438 to -2.896 eV in Al-decorated TiSe). Among them, NH and NO have the lowest adsorption energies in Cu and Al-decorated TiSe, respectively. Further research has shown that the decrease in adsorption energy of gas molecules is mainly due to orbital hybridization and charge transfer between decorated Cu and Al atoms and gas molecules. These findings suggest that TiSe decorated with Cu and Al can effectively improve its sensitivity to NH and NO, respectively, making it promising in gas sensing applications.

摘要

快速的工业发展导致全球污染日益严重,因此迫切需要开发高灵敏度、低成本且便携的气体传感器。在这项工作中,基于第一性原理计算,研究了CO、CO、HS、NH、NO、NO、O和SO气体分子在原始的以及铜和铝修饰的单层TiSe上的吸附情况。首先,声子谱和从头算分子动力学模拟结果表明TiSe具有动力学稳定性。此外,与原始TiSe(-0.029至-0.154 eV)相比,用铜或铝修饰后,气体分子(不包括CO)的吸附能显著降低(在铜修饰的TiSe中为-0.212至-0.977 eV,在铝修饰的TiSe中为-0.438至-2.896 eV)。其中,NH和NO在铜和铝修饰的TiSe中分别具有最低的吸附能。进一步的研究表明,气体分子吸附能的降低主要是由于修饰的铜和铝原子与气体分子之间的轨道杂化和电荷转移。这些发现表明,用铜和铝修饰的TiSe可以分别有效提高其对NH和NO的灵敏度,使其在气体传感应用中具有广阔前景。

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