Ming Hsieh Department of Electrical Engineering, University of Southern California , Los Angeles, California 90089, United States.
NG Next, Northrop Grumman, 1 Space Park, Redondo Beach, California 90278, United States.
Nano Lett. 2017 Jun 14;17(6):3675-3680. doi: 10.1021/acs.nanolett.7b00897. Epub 2017 May 17.
As an emerging single elemental layered material with a low symmetry in-plane crystal lattice, black phosphorus (BP) has attracted significant research interest owing to its unique electronic and optoelectronic properties, including its widely tunable bandgap, polarization-dependent photoresponse and highly anisotropic in-plane charge transport. Despite extensive study of the steady-state charge transport in BP, there has not been direct characterization and visualization of the hot carriers dynamics in BP immediately after photoexcitation, which is crucial to understanding the performance of BP-based optoelectronic devices. Here we use the newly developed scanning ultrafast electron microscopy (SUEM) to directly visualize the motion of photoexcited hot carriers on the surface of BP in both space and time. We observe highly anisotropic in-plane diffusion of hot holes with a 15 times higher diffusivity along the armchair (x-) direction than that along the zigzag (y-) direction. Our results provide direct evidence of anisotropic hot carrier transport in BP and demonstrate the capability of SUEM to resolve ultrafast hot carrier dynamics in layered two-dimensional materials.
作为一种具有低对称面内晶格的新兴单元素层状材料,黑磷 (BP) 因其独特的电子和光电特性而引起了广泛的研究兴趣,包括其可调谐的带隙、偏振依赖的光响应和各向异性的面内电荷输运。尽管对 BP 中的稳态电荷输运进行了广泛的研究,但对于光激发后 BP 中热载流子动力学的直接表征和可视化尚未进行,这对于理解基于 BP 的光电设备的性能至关重要。在这里,我们使用新开发的扫描超快电子显微镜 (SUEM) 直接可视化 BP 表面上光激发的热载流子在空间和时间上的运动。我们观察到热空穴具有各向异性的面内扩散,沿扶手椅 (x-) 方向的扩散率比沿锯齿 (y-) 方向的扩散率高 15 倍。我们的结果提供了 BP 中各向异性热载流子输运的直接证据,并证明了 SUEM 能够解析层状二维材料中的超快热载流子动力学。