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铝掺杂和单空位蓝磷烯与分子相互作用的建模:密度泛函理论研究

Modeling the aluminum-doped and single vacancy blue phosphorene interactions with molecules: a density functional theory study.

作者信息

Corona-García C A, Martínez-Olguín A C, Sánchez-Ochoa Francisco, Cocoletzi Gregorio H

机构信息

Instituto de Física, Benemérita Universidad Autónoma de Puebla, Aparatdo Postal J-48, Puebla, 72570, Mexico.

Instituto de Física, Universidad Nacional Autónoma de México, Apartado Postal 20-364, Cd. de México, 01000, Mexico.

出版信息

J Mol Model. 2021 Apr 28;27(5):141. doi: 10.1007/s00894-021-04772-7.

Abstract

Structural, electronic, binding energies and magnetic properties of aluminum-doped and single vacancy blue phosphorene interacting with pollutant molecules are investigated using the density functional theory (DFT) with periodic boundary conditions. Acetylene, ozone, sulfur trioxide, hydrogen selenide, and sulfur dichloride molecules are considered to show the efficiency and enhancement of the sensing properties in comparison with the pristine blue phosphorene. Acetylene, sulfur trioxide, hydrogen selenide, and sulfur dichloride show chemisorption (> 0.5 eV/molecule) when interacting with the aluminum-doped system, but the ozone molecule dissociates in all configurations and symmetry sites. On the other hand, the acetylene, ozone, and sulfur trioxide with the single vacancy blue phosphorene exhibit chemisorption, the hydrogen selenide molecule exhibit a weak interaction energy, and the sulfur dichloride dissociates in all configurations and symmetry sites. In all the cases, the enhancement in the interaction energy was achieved when compared to other results for the same molecules. Finally, the single vacancy blue phosphorene shows a magnetic moment of ~1 μ/supercell, as induced by the vacancy.

摘要

利用具有周期性边界条件的密度泛函理论(DFT),研究了铝掺杂和单空位蓝色磷烯与污染物分子相互作用时的结构、电子、结合能和磁性。考虑乙炔、臭氧、三氧化硫、硒化氢和二氯化硫分子,以与原始蓝色磷烯相比展示传感性能的效率和增强情况。乙炔、三氧化硫、硒化氢和二氯化硫与铝掺杂体系相互作用时表现出化学吸附(>0.5 eV/分子),但臭氧分子在所有构型和对称位点均发生解离。另一方面,单空位蓝色磷烯与乙炔、臭氧和三氧化硫表现出化学吸附,硒化氢分子表现出较弱的相互作用能,二氯化硫在所有构型和对称位点均发生解离。在所有情况下,与相同分子的其他结果相比,相互作用能均有所增强。最后,单空位蓝色磷烯由于空位诱导表现出约1 μ/超晶胞的磁矩。

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