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钠、镁和铝吸附的锡烯纳米带的电磁和光学性质:潜在应用

Electromagnetic and optical properties of Na, Mg, and Al-adsorbed stanene nanoribbons: potential applications.

作者信息

Thanh Tung Nguyen, Phong Tran Cong, Ngoc Hoang Van

机构信息

Institute for Advanced Study in Technology, Ton Duc Thang University, Ho Chi Minh City, Vietnam.

Faculty of Electrical and Electronics Engineering, Ton Duc Thang University, Ho Chi Minh City, Vietnam.

出版信息

J Phys Condens Matter. 2025 Jan 9;37(11). doi: 10.1088/1361-648X/ada415.

Abstract

Density functional theory (DFT) combined with the Viennasimulation package (VASP) was used to investigate the electronic, magnetic, and optical properties of one-dimensional stanene nanoribbons (SnNRs) and Na, Mg, and Al-adsorbed SnNRs. The SnNRs, with a width of 10 Sn atoms and hydrogen-passivated edges, retained their hexagonal honeycomb structure after structural optimization. Both pristine and adsorbed SnNRs exhibit narrow band gap semiconducting behavior, with pristine SnNRs being non-magnetic and adsorbed SnNRs showing non-zero magnetic moments. Partial density of states analysis revealed multi-orbital hybridization contributing to the formation ofandbonds. Optical property analysis highlighted distinct differences between pristine and adsorbed systems, including optical anisotropy and wavelength-dependent absorption. These results indicate the potential of SnNRs for applications in optical information technology, sensors and photocatalysis.

摘要

采用密度泛函理论(DFT)结合维也纳模拟包(VASP)研究了一维锡烯纳米带(SnNRs)以及钠、镁和铝吸附的SnNRs的电子、磁性和光学性质。宽度为10个锡原子且边缘氢钝化的SnNRs在结构优化后保留了其六角形蜂窝结构。原始的和吸附的SnNRs均表现出窄带隙半导体行为,原始的SnNRs是非磁性的,而吸附的SnNRs表现出非零磁矩。态密度分析表明多轨道杂化有助于形成σ键和π键。光学性质分析突出了原始体系和吸附体系之间的明显差异,包括光学各向异性和波长依赖性吸收。这些结果表明SnNRs在光信息技术、传感器和光催化应用方面具有潜力。

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