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用于气体传感应用的二维氧化镓单层膜。

Two-Dimensional Gallium Oxide Monolayer for Gas-Sensing Application.

作者信息

Zhao Junlei, Huang Xinran, Yin Yiheng, Liao Yikai, Mo Haowen, Qian Qingkai, Guo Yuzheng, Chen Xiaolong, Zhang Zhaofu, Hua Mengyuan

机构信息

Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen 518055, China.

School of Electrical and Automation, Wuhan University, Wuhan, Hubei 430072, China.

出版信息

J Phys Chem Lett. 2021 Jun 24;12(24):5813-5820. doi: 10.1021/acs.jpclett.1c01393. Epub 2021 Jun 17.

Abstract

A two-dimensional (2D) GaO monolayer with an asymmetric quintuple-layer configuration was reported as a novel 2D material with excellent stability and strain tunability. This unusual asymmetrical structure opens up new possibilities for improving the selectivity and sensitivity of gas sensors by using selected surface orientations. In this study, the surface adsorptions of nine molecular gases, namely, O, CO, CO, SO, NO, HS, NO, NH, and HO, on the 2D GaO monolayer are systematically investigated through first-principles calculations. The intrinsic dipole of the system leads to different adsorption energies and changes in the electronic structures between the top- and bottom-surface adsorptions. Analyses of electronic structures and charge transport calculations indicate a potential application of the 2D GaO monolayer as a room-temperature NO gas-sensing device with high sensitivity and tunable adsorption energy using plenary strain-induced lattice distortion.

摘要

据报道,具有不对称五层结构的二维(2D)GaO单层是一种具有出色稳定性和应变可调性的新型二维材料。这种不同寻常的不对称结构为通过使用选定的表面取向来提高气体传感器的选择性和灵敏度开辟了新的可能性。在本研究中,通过第一性原理计算系统地研究了九种分子气体,即O、CO、CO、SO、NO、HS、NO、NH和HO在二维GaO单层上的表面吸附。系统的固有偶极导致顶表面和底表面吸附之间的吸附能不同以及电子结构的变化。电子结构分析和电荷传输计算表明,二维GaO单层具有作为室温下具有高灵敏度和可调吸附能的NO气体传感装置的潜在应用,该装置利用完全应变诱导的晶格畸变。

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