论文标题
与缺陷的水氧化bivo $ _4 $ _4 $ _4 $ _4的混合激素性质
Mixed excitonic nature in water-oxidized BiVO$_4$ surfaces with defects
论文作者
论文摘要
Bivo $ _4 $是有效的有效的光催化剂,用于有效的水氧化,其表面反应性由活性催化位点的结构确定。在存在氧空位的情况下,表面氧化会引起电子定位,这表明一种原子途径以提高催化循环中的电荷转移效率。在这项工作中,我们研究了水氧化后的氧气空位对Bivo $ _4 $表面的电子和光学性质的影响。我们使用密度功能理论和多体扰动理论来探索电子和准粒子能级的变化,并评估电子孔耦合作为基础结构的函数。我们表明,尽管缺陷的存在改变了原子结构,并在很大程度上改变了波功能性质,从而导致在准膜间隙区域的缺陷局部定位状态,但由于缺陷和非缺陷电子孔转换,光激发在很大程度上保持不变。我们的发现表明,缺陷引起的表面氧化支持通过结合和可调电子状态以及通过光学跃迁的混合性质来改善电子传输,预计会减少电子孔缺陷捕获。
BiVO$_4$ is a promising photocatalyst for efficient water oxidation, with surface reactivity determined by the structure of active catalytic sites. Surface oxidation in the presence of oxygen vacancies induces electron localization, suggesting an atomistic route to improve the charge transfer efficiency within the catalytic cycle. In this work, we study the effect of oxygen vacancies on the electronic and optical properties at BiVO$_4$ surfaces upon water oxidation. We use density functional theory and many-body perturbation theory to explore the change in the electronic and quasiparticle energy levels and to evaluate the electron-hole coupling as a function of the underlying structure. We show that while the presence of defects alters the atomic structure and largely modifies the wavefunction nature, leading to defect-localized states at the quasipatricle gap region, the optical excitations remain largely unchanged due to substantial hybridization of defect and non-defect electron-hole transitions. Our findings suggest that defect-induced surface oxidation supports improved electron transport, both through bound and tunable electronic states and via a mixed nature of the optical transitions, expected to reduce electron-hole defect trapping.