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http://hdl.handle.net/10397/117953
| Title: | Two-dimensional functionalized Mo₂NT₂ (T=H, O) monolayer as promising candidates for NOₓ gas capture agents and sensors | Authors: | Cheng, Z Ying, Y Xue, Y Wang, B Wang, Z Peng, L Shi, T Chen, J Liu, X Huang, H Lin, J |
Issue Date: | Oct-2025 | Source: | Physical review applied, Oct. 2025, v. 24, no. 4, 044047, p. 044047-1 - 044047-15 | Abstract: | This study employs first-principles calculations to investigate functionalized Mo2NT2 (T=Ø, H, O, F) MXenes as dual-functional materials for toxic gas capture and sensing applications. The surface of the pristine Mo2N surface is unsaturated, possesses dangling bonds, and exhibits a strong capability to capture various environmental gases. Surface functionalization significantly modulates this behavior: Mo2NH2 demonstrates remarkable selectivity toward NOx capture, while Mo2NO2 emerges as a superior NO sensor due to its optimal adsorption strength (−0.342 eV), substantial charge transfer (−0.197 e), and 14%–18% current reduction in nanodevice measurements. Notably, investigations of mixed-terminated Mo2NOx(OH)y systems reveal that hydroxyl concentration dictates NO reaction pathways: low OH triggers proton abstraction, forming O-N-H structures, whereas high OH induces direct O-H cleavage, generating H2N-OH. Although water passivation mitigates these reactions, irreversible chemical transformations persist, underscoring that precise control of surface chemistry, particularly terminal-group engineering, is essential for achieving the selective capture capabilities and reversible sensing performance required for next-generation MXene-based gas management platforms. | Publisher: | American Physical Society | Journal: | Physical review applied | ISSN: | 2331-7019 | DOI: | 10.1103/jst3-45bj | Rights: | © 2025 American Physical Society The following publication Cheng, Z., Ying, Y., Xue, Y., Wang, B., Wang, Z., Peng, L., Shi, T., Chen, J., Liu, X., Huang, H., & Lin, J. (2025). Two-dimensional functionalized Mo2NT2 (T=H, O) monolayer as promising candidates for NOx gas capture agents and sensors. Physical Review Applied, 24(4), 044047 is available at https://doi.org/10.1103/jst3-45bj. |
| Appears in Collections: | Journal/Magazine Article |
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| jst3-45bj.pdf | 6.26 MB | Adobe PDF | View/Open |
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