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通过暗场超快电子显微镜观察黑磷膜的光致各向异性形态动力学

Light-Induced Anisotropic Morphological Dynamics of Black Phosphorus Membranes Visualized by Dark-Field Ultrafast Electron Microscopy.

作者信息

Kim Ye-Jin, Lee Yangjin, Kim Kwanpyo, Kwon Oh-Hoon

机构信息

Department of Chemistry, School of Natural Science, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulsan 44919, Korea.

Center for Soft and Living Matter, Institute for Basic Science (IBS), 50 UNIST-gil, Ulsan 44919, Korea.

出版信息

ACS Nano. 2020 Sep 22;14(9):11383-11393. doi: 10.1021/acsnano.0c03644. Epub 2020 Aug 17.

Abstract

Black phosphorus (BP) is an elemental layered material with a strong in-plane anisotropic structure. This structure is accompanied by anisotropic optical, electrical, thermal, and mechanical properties. Despite interest in BP from both fundamental and technical aspects, investigation into the structural dynamics of BP caused by strain fields, which are prevalent for two-dimensional (2D) materials and tune the material physical properties, has been overlooked. Here, we report the morphological dynamics of photoexcited BP membranes observed using time-resolved diffractograms and dark-field images obtained via ultrafast electron microscopy. Aided by 4D reconstruction, we visualize the nonequilibrium bulging of thin BP membranes and reveal that the buckling transition is driven by impulsive thermal stress upon photoexcitation in real time. The bulging, buckling, and flattening (on strain release) showed anisotropic spatiotemporal behavior. Our observations offer insights into the fleeting morphology of anisotropic 2D matter and provide a glimpse into the mapping of transient, modulated physical properties upon impulsive excitation, as well as strain engineering at the nanoscale.

摘要

黑磷(BP)是一种具有强面内各向异性结构的元素层状材料。这种结构伴随着各向异性的光学、电学、热学和力学性能。尽管从基础和技术层面来看,人们对黑磷都很感兴趣,但对于二维(2D)材料普遍存在的、并能调节材料物理性能的应变场引起的黑磷结构动力学的研究却被忽视了。在此,我们报告了利用时间分辨衍射图和通过超快电子显微镜获得的暗场图像所观察到的光激发黑磷膜的形态动力学。借助四维重建,我们可视化了薄黑磷膜的非平衡凸起,并揭示了在光激发时,屈曲转变是由脉冲热应力实时驱动的。凸起、屈曲和平坦化(应变释放时)表现出各向异性的时空行为。我们的观察结果为各向异性二维物质的瞬态形态提供了见解,并让我们得以一窥脉冲激发时瞬态、调制物理性能的映射,以及纳米尺度上的应变工程。

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