论文标题
五苯的光学特性的各向异性:黑色磷界面
Anisotropy of the Optical Properties of Pentacene:Black Phosphorus Interfaces
论文作者
论文摘要
黑磷(BP)是具有各向异性特性的分层材料。我们研究由五苯烯单层吸附在单层BP上的界面,这是一种用于BP表面钝化的原型系统。我们分别将五苯甲烷单层沿着锯齿形和BP底物的扶手椅方向放置,以检查异质界面的各向异性。我们执行第一原理$ GW $加上Bethe-Salpeter方程($ GW $ -BSE)计算,以确定准粒子和光学性能。为了定量分析光学特性的各向异性,我们开发了一种通用计算方案,将界面激子分解为不同的贡献。我们发现当单层五苯沿扶手椅方向放置时,形成了独特的电荷转移激子,并讨论了如何通过界面调制每个组件的各向异性。我们的结果阐明了通过分子吸附对BP表面钝化的理解,并为将来的实验和计算研究提供了基准。
Black phosphorus (BP) is a layered material with anisotropic properties. We study interfaces formed by a pentacene monolayer adsorbed on monolayer BP, a prototypical system for BP surface passivation. We place the pentacene monolayer along the zigzag and armchair directions of the BP substrate, respectively, to examine the anisotropy of the heterogeneous interfaces. We perform first-principles $GW$ plus Bethe-Salpeter equation ($GW$-BSE) calculations to determine the quasiparticle and optical properties. To quantitatively analyze the anisotropy of the optical properties, we develop a general computational scheme to decompose the interface excitons into different contributions. We find a distinct charge-transfer exciton formed when the monolayer pentacene is placed along the armchair direction, and discuss how the anisotropy of each component is modulated by the interface. Our results shine a light on the understanding of the BP surface passivation via molecular adsorption and provide a benchmark for future experimental and computational studies.