First principles calculations of the electronic properties of O-and O2-NbSe2 complexes

A. A. Pido, Bryan P. Pagcaliwagan
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引用次数: 1

Abstract

Purpose – We investigated the interaction of O and O2 on monolayer Niobium Diselenide (NbSe2) to provide theoretical predictions about the electronic properties of the complexes using First principles calculations in Quantum Espresso 6.7. As known, considering impurities in pristine nanomaterials like NbSe2 is very important as it can alter some of its properties. Method – In this paper, we performed some topological analyses on the electronic densities and electronic structures calculations to O- and O2-NbSe2 complexes. Charge Density Difference (CDD) and Bader charge analysis reveal that O and O2 acted as oxidizing agents and accumulated electronic charges from the NbSe2. Results – The electronic properties calculations of the complexes showed that the metallic behavior of NbSe2 is preserved after O and O2 adsorption. Calculations of the net charge transfer revealed that the atomic and molecular oxygen has accumulated electronic charges while the NbSe2 has depleted electronic charges. These results showed the possibility of tailoring the electronic properties of NbSe2. Conclusion – The interaction of O and O2 with the monolayer NbSe2 caused charge redistributions while maintaining the metallicity of the NbSe2. In all circumstances, the results are consistent with the established works which show the possibility of modifying the electronic properties of NbSe2 that could open some potential applications in nanotechnology and other nanoelectronics-related devices. Recommendation – Further calculations could be done like electron localization function, optical properties, and vibrational properties, to understand more the nature of their interaction. Practical Implication – This study provided insights and theoretical predictions on the electronic properties of oxygen adsorption to NbSe2 which could help to better understand how metallic nanomaterials like NbSe2 react with oxygen, leading to some potential applications.
o -和O2-NbSe2配合物电子性质的第一性原理计算
目的:研究O和O2在单层二硒化铌(NbSe2)上的相互作用,利用Quantum Espresso 6.7中的第一性原理计算对配合物的电子性质提供理论预测。众所周知,考虑像NbSe2这样的原始纳米材料中的杂质是非常重要的,因为它可以改变其某些性质。方法:本文对O-和O2-NbSe2配合物的电子密度和电子结构进行了拓扑分析和计算。电荷密度差(CDD)和Bader电荷分析表明,O和O2作为氧化剂,从NbSe2中积累电子电荷。结果-配合物的电子性质计算表明,在O和O2吸附后,NbSe2的金属行为得以保留。净电荷转移的计算表明,原子氧和分子氧积累了电子电荷,而NbSe2耗尽了电子电荷。这些结果显示了调整NbSe2电子性质的可能性。结论- O和O2与单层NbSe2的相互作用在保持NbSe2金属丰度的同时引起电荷重分布。在所有情况下,结果与已有的工作一致,显示了改变NbSe2电子性质的可能性,这可能在纳米技术和其他纳米电子相关器件中开辟一些潜在的应用。建议-可以做进一步的计算,如电子定位函数,光学性质和振动性质,以更多地了解它们相互作用的本质。实际意义-本研究提供了对氧吸附NbSe2的电子性质的见解和理论预测,有助于更好地理解NbSe2等金属纳米材料如何与氧反应,从而导致一些潜在的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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