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单层黑磷烯和体相黑磷中的光生载流子动力学。

Photocarrier dynamics in monolayer phosphorene and bulk black phosphorus.

机构信息

Department of Physics and Astronomy, The University of Kansas, Lawrence, Kansas 66045, USA.

出版信息

Nanoscale. 2018 Jun 21;10(24):11307-11313. doi: 10.1039/c8nr02540a.

Abstract

We report a combined theoretical and experimental study on photocarrier dynamics in monolayer phosphorene and bulk black phosphorus. Samples of monolayer phosphorene and bulk black phosphorus were fabricated by mechanical exfoliation, identified according to their reflective contrasts, and protected by covering them with hexagonal boron nitride layers. Photocarrier dynamics in these samples was studied by an ultrafast pump-probe technique. The photocarrier lifetime of monolayer phosphorene was found to be about 700 ps, which is about 9 times longer than that of bulk black phosphorus. This trend was reproduced in our calculations based on ab initio nonadiabatic molecular dynamics combined with time-domain density functional theory in the Kohn-Sham representation, and can be attributed to the smaller bandgap and stronger nonadiabatic coupling in bulk. The transient absorption response was also found to be dependent on the sample orientation with respect to the pump polarization, which is consistent with the previously reported anisotropic absorption of phosphorene. In addition, an oscillating component of the differential reflection signal at early probe delays was observed in the bulk sample and was attributed to the layer-breathing phonon mode with an energy of about 1 meV and a decay time of about 1.35 ps. These results provide valuable information for application of monolayer phosphorene in optoelectronics.

摘要

我们报告了一个关于单层黑磷烯和体相黑磷的光载流子动力学的理论和实验综合研究。通过机械剥离制备了单层黑磷烯和体相黑磷的样品,根据其反射对比度进行了识别,并通过覆盖六方氮化硼层对其进行了保护。通过超快泵浦探测技术研究了这些样品中的光载流子动力学。发现单层黑磷烯的光载流子寿命约为 700 ps,比体相黑磷长约 9 倍。这一趋势在我们基于 Kohn-Sham 表象的从头算非绝热分子动力学结合时域密度泛函理论的计算中得到了重现,可以归因于体相中较小的带隙和更强的非绝热耦合。瞬态吸收响应也发现与样品相对于泵浦偏振的取向有关,这与先前报道的黑磷烯的各向异性吸收一致。此外,在体相样品中观察到在早期探测延迟时差分反射信号的一个振荡分量,归因于能量约为 1 meV 和衰减时间约为 1.35 ps 的层呼吸声子模式。这些结果为单层黑磷烯在光电子学中的应用提供了有价值的信息。

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