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通过在纳米级样品几何结构上施加超薄金属涂层对低电导率和绝缘材料进行脉冲电压原子探针层析成像。

Pulsed-voltage atom probe tomography of low conductivity and insulator materials by application of ultrathin metallic coating on nanoscale specimen geometry.

作者信息

Adineh Vahid R, Marceau Ross K W, Chen Yu, Si Kae J, Velkov Tony, Cheng Wenlong, Li Jian, Fu Jing

机构信息

Department of Mechanical and Aerospace Engineering, Monash University, Clayton, VIC 3800, Australia.

Deakin University, Institute for Frontier Materials, Geelong, VIC 3216, Australia.

出版信息

Ultramicroscopy. 2017 Oct;181:150-159. doi: 10.1016/j.ultramic.2017.05.002. Epub 2017 May 13.

Abstract

We present a novel approach for analysis of low-conductivity and insulating materials with conventional pulsed-voltage atom probe tomography (APT), by incorporating an ultrathin metallic coating on focused ion beam prepared needle-shaped specimens. Finite element electrostatic simulations of coated atom probe specimens were performed, which suggest remarkable improvement in uniform voltage distribution and subsequent field evaporation of the insulated samples with a metallic coating of approximately 10nm thickness. Using design of experiment technique, an experimental investigation was performed to study physical vapor deposition coating of needle specimens with end tip radii less than 100nm. The final geometries of the coated APT specimens were characterized with high-resolution scanning electron microscopy and transmission electron microscopy, and an empirical model was proposed to determine the optimal coating thickness for a given specimen size. The optimal coating strategy was applied to APT specimens of resin embedded Au nanospheres. Results demonstrate that the optimal coating strategy allows unique pulsed-voltage atom probe analysis and 3D imaging of biological and insulated samples.

摘要

我们提出了一种新颖的方法,通过在聚焦离子束制备的针状样品上涂覆超薄金属涂层,利用传统脉冲电压原子探针断层扫描(APT)技术分析低电导率和绝缘材料。对涂覆原子探针样品进行了有限元静电模拟,结果表明,对于厚度约为10nm的金属涂层绝缘样品,其电压分布均匀性和随后的场蒸发有显著改善。采用实验设计技术,对端部半径小于100nm的针状样品进行物理气相沉积涂层的实验研究。用高分辨率扫描电子显微镜和透射电子显微镜对涂覆APT样品的最终几何形状进行了表征,并提出了一个经验模型来确定给定样品尺寸的最佳涂层厚度。将最佳涂层策略应用于树脂包埋金纳米球的APT样品。结果表明,最佳涂层策略能够对生物和绝缘样品进行独特的脉冲电压原子探针分析和三维成像。

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