Department of Physics, Universidad de los Andes, Bogotá, 111711, Colombia.
Escuela de Ingeniería, Ciencia y Tecnología, Universidad del Rosario, Bogotá, 111711, Colombia.
Sci Rep. 2023 Apr 25;13(1):6752. doi: 10.1038/s41598-023-32642-0.
We report on the synthesis and characterization of VO nanoparticles grown using a sol-gel method at different calcination temperatures. We observed a surprising reduction in the optical band gap from 2.20 to 1.18 eV with increasing calcination temperature from 400 to 500 °C. Raman and X-Ray diffraction measurements indicated slight changes in the lattice parameters induced by the growth process. However, density functional theory calculations of the Rietveld-refined and pristine structures revealed that the observed optical gap reduction could not be explained by structural changes alone. By introducing oxygen vacancies to the refined structures, we could reproduce the reduction of the band gap. Our calculations also showed that the inclusion of oxygen vacancies at the vanadyl position creates a spin-polarized interband state that reduces the electronic band gap and promotes a magnetic response due to unpaired electrons. This prediction was confirmed by our magnetometry measurements, which exhibited a ferromagnetic-like behavior. Our findings suggest that oxygen vacancies play a crucial role in band gap reduction and the promotion of a ferromagnetic-like response in an otherwise paramagnetic material. This provides a promising route to engineer novel devices.
我们报告了使用溶胶-凝胶法在不同煅烧温度下生长 VO 纳米粒子的合成和表征。我们观察到,随着煅烧温度从 400°C 升高到 500°C,光学带隙从 2.20 eV 出人意料地降低到 1.18 eV。拉曼和 X 射线衍射测量表明,晶格参数的微小变化是由生长过程引起的。然而,基于精修结构和原始结构的密度泛函理论计算表明,观察到的带隙减小不能仅用结构变化来解释。通过在精修结构中引入氧空位,我们可以重现带隙的减小。我们的计算还表明,在钒酰位置引入氧空位会创建一个自旋极化的带间态,从而减小电子带隙并由于未配对电子而促进磁响应。我们的磁强计测量证实了这一预测,该测量表现出类铁磁性行为。我们的研究结果表明,氧空位在带隙减小和促进原本顺磁材料的类铁磁响应方面起着至关重要的作用。这为设计新型器件提供了一条有前途的途径。