论文标题

半导体中的光化学各向异性和方向依赖性光吸收

Photochemical Anisotropy and Direction-dependent Optical Absorption in Semiconductors

论文作者

Ricca, Chiara, Aschauer, Ulrich

论文摘要

半导体上的光化学反应是各向异性的,因为它们发生在不同方向的表面上。了解这种各向异性的起源对于工程更有效的光催化剂至关重要。在这项工作中,我们使用混合密度功能理论(DFT)来识别与不同半导体中最多的光电载体相关的表面。对于每种材料,我们创建一个在不同波矢量下光学转变概率的球形热图。这些地图允许确定与大多数光电载体相关的方向,因此可以用于对光化学应用的最具反应性表面进行预测。结果表明,如前所述,通常可以将热图与在常规带结构图中观察到的频带的各向异性相关联。但是,我们还证明,传统的频段结构图并不总是提供所有信息,并且考虑到通过其过渡偶极矩加权的所有可能过渡的贡献对于获得完整的图片至关重要。

Photochemical reactions on semiconductors are anisotropic, since they occur with different rates on surfaces of different orientation. Understanding the origin of this anisotropy is crucial to engineering more efficient photocatalysts. In this work, we use hybrid density functional theory (DFT) to identify the surfaces associated with the largest number of photo-generated carriers in different semiconductors. For each material we create a spherical heat map of the probability of optical transitions at different wave vectors. These maps allow to identify the directions associated with the majority of the photo-generated carriers and can thus be used to make predictions about the most reactive surfaces for photochemical applications. Results indicate that it is generally possible to correlate the heat maps with the anisotropy of the bands observed in conventional band-structure plots, as previously suggested. However, we also demonstrate that conventional bands-structure plots do not always provide all the informations and that taking into account the contribution of all possible transitions weighted by their transition dipole moments is crucial to obtain a complete picture.

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