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密度泛函理论为β-SnSe单层作为一种高灵敏度且可恢复的臭氧传感材料提供了见解。

Density Functional Theory Provides Insights into β-SnSe Monolayers as a Highly Sensitive and Recoverable Ozone Sensing Material.

作者信息

Wu Jiayin, Li Zongbao, Liang Tongle, Mo Qiuyan, Wei Jingting, Li Bin, Xing Xiaobo

机构信息

Department of Engineering Technology, Guangdong Open University, Guangzhou 510091, China.

Centre for Optical and Electromagnetic Research, South China Academy of Advanced Optoelectronics, South China Normal University, Guangzhou 510006, China.

出版信息

Micromachines (Basel). 2024 Jul 27;15(8):960. doi: 10.3390/mi15080960.

Abstract

This study explores the potential of β-SnSe monolayers as a promising material for ozone (O) sensing using density functional theory (DFT) combined with the non-equilibrium Green's function (NEGF) method. The adsorption characteristics of O molecules on the β-SnSe monolayer surface were thoroughly investigated, including adsorption energy, band structure, density of states (DOSs), differential charge density, and Bader charge analysis. Post-adsorption, hybridization energy levels were introduced into the system, leading to a reduced band gap and increased electrical conductivity. A robust charge exchange between O and the β-SnSe monolayer was observed, indicative of chemisorption. Recovery time calculations also revealed that the β-SnSe monolayer could be reused after O adsorption. The sensitivity of the β-SnSe monolayer to O was quantitatively evaluated through current-voltage characteristic simulations, revealing an extraordinary sensitivity of 1817.57% at a bias voltage of 1.2 V. This sensitivity surpasses that of other two-dimensional materials such as graphene oxide. This comprehensive investigation demonstrates the exceptional potential of β-SnSe monolayers as a highly sensitive, recoverable, and environmentally friendly O sensing material.

摘要

本研究利用密度泛函理论(DFT)结合非平衡格林函数(NEGF)方法,探索了β-SnSe单层作为一种有前景的臭氧(O)传感材料的潜力。深入研究了O分子在β-SnSe单层表面的吸附特性,包括吸附能、能带结构、态密度(DOSs)、差分电荷密度和巴德电荷分析。吸附后,系统中引入了杂化能级,导致带隙减小和电导率增加。观察到O与β-SnSe单层之间存在强烈的电荷交换,表明发生了化学吸附。恢复时间计算还表明,β-SnSe单层在O吸附后可以重复使用。通过电流-电压特性模拟定量评估了β-SnSe单层对O的灵敏度,发现在1.2 V偏置电压下具有1817.57%的非凡灵敏度。该灵敏度超过了氧化石墨烯等其他二维材料。这项全面的研究证明了β-SnSe单层作为一种高灵敏度、可回收且环境友好的O传感材料具有卓越的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96bf/11356510/91391dc90c0b/micromachines-15-00960-g001.jpg

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