Advanced Photon Source, Argonne National Laboratory , Argonne, Illinois 60439, United States.
Center for Nanoscale Materials, Argonne National Laboratory , Argonne, Illinois 60439, United States.
Nano Lett. 2017 Dec 13;17(12):7696-7701. doi: 10.1021/acs.nanolett.7b03823. Epub 2017 Nov 7.
Visualizing the dynamical response of material heterointerfaces is increasingly important for the design of hybrid materials and structures with tailored properties for use in functional devices. In situ characterization of nanoscale heterointerfaces such as metal-semiconductor interfaces, which exhibit a complex interplay between lattice strain, electric potential, and heat transport at subnanosecond time scales, is particularly challenging. In this work, we use a laser pump/X-ray probe form of Bragg coherent diffraction imaging (BCDI) to visualize in three-dimension the deformation of the core of a model core/shell semiconductor-metal (ZnO/Ni) nanorod following laser heating of the shell. We observe a rich interplay of radial, axial, and shear deformation modes acting at different time scales that are induced by the strain from the Ni shell. We construct experimentally informed models by directly importing the reconstructed crystal from the ultrafast experiment into a thermo-electromechanical continuum model. The model elucidates the origin of the deformation modes observed experimentally. Our integrated imaging approach represents an invaluable tool to probe strain dynamics across mixed interfaces under operando conditions.
可视化材料异质界面的动力学响应对于设计具有特定功能器件应用的定制化混合材料和结构变得越来越重要。在原位条件下对纳米级异质界面(例如金属-半导体界面)进行表征极具挑战性,因为这些界面在亚纳秒时间尺度上表现出晶格应变、电势和热输运之间的复杂相互作用。在这项工作中,我们使用激光泵浦/ X 射线探针形式的布拉格相干衍射成像(BCDI)来可视化模型核/壳半导体-金属(ZnO/Ni)纳米棒核心在激光加热外壳后的三维变形。我们观察到由 Ni 外壳应变引起的在不同时间尺度上作用的丰富的径向、轴向和剪切变形模式之间的相互作用。我们通过直接将超快实验中重构的晶体导入热-电-机械连续体模型来构建实验信息丰富的模型。该模型阐明了实验中观察到的变形模式的起源。我们的集成成像方法代表了一种在操作条件下探测混合界面应变动力学的非常有价值的工具。