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看看你让我粘上了什么:用于低温原子探针断层扫描研究的SEMGlu™促成的替代低温样品制备工艺。

Look What You Made Me Glue: SEMGlu™ Enabled Alternative Cryogenic Sample Preparation Process for Cryogenic Atom Probe Tomography Studies.

作者信息

Mulcahy Neil, Douglas James O, Conroy Michele Shelly

机构信息

Department of Materials, London Centre of Nanotechnology, Imperial Henry Royce Institute, Royal School of Mines, Imperial College London, Prince Consort Road, London SW7 2AZ, UK.

出版信息

Microsc Microanal. 2025 Jul 15;31(4). doi: 10.1093/mam/ozaf063.

Abstract

Extensive efforts have been applied to develop workflows for sample preparation of specimens for atom probe tomography at cryogenic temperatures. This is primarily due to the difficulty involved in preparing site-specific lift-out samples at cryogenic temperatures without the assistance of the gas injection system (GIS) as using it under cryogenic conditions leads to nonuniform and difficult to control deposition. Building on the efforts of previously developed GIS-free workflows utilizing redeposition techniques, this work provides an alternative approach using SEMGlu™, which is an electron beam curing adhesive that remains usable at cryogenic temperatures, to both lift out cryogenically frozen samples and mount these samples to Si microarray posts for subsequent redeposition welding. This approach is applicable for a full cryogenic workflow but is particularly useful for nonfully cryogenic workflows such as beam-sensitive samples, samples that mill easily, and samples with challenging geometries. We demonstrate atom probe analysis of silicon samples in both laser pulsing and voltage mode prepared using this workflow, with comparable analytical performance to a presharpened microtip coupon. An application-based example, which directly benefits from this approach, correlative liquid cell transmission electron microscopy and cryogenic atom probe tomography sample preparation, is also shown.

摘要

人们已经付出了巨大努力来开发用于在低温下为原子探针断层扫描制备样品的工作流程。这主要是因为在没有气体注入系统(GIS)辅助的情况下,在低温下制备特定位置的取出样品存在困难,因为在低温条件下使用它会导致沉积不均匀且难以控制。在先前利用再沉积技术开发的无GIS工作流程的基础上,这项工作提供了一种使用SEMGlu™的替代方法,SEMGlu™是一种电子束固化粘合剂,在低温下仍可使用,用于取出低温冷冻样品并将这些样品安装到硅微阵列柱上,以便随后进行再沉积焊接。这种方法适用于完整的低温工作流程,但对于非完全低温工作流程(如对束敏感的样品、易于研磨的样品以及具有复杂几何形状的样品)特别有用。我们展示了使用此工作流程制备的硅样品在激光脉冲和电压模式下的原子探针分析,其分析性能与预锐化的微尖试样相当。还展示了一个直接受益于这种方法的基于应用的示例,即相关的液池透射电子显微镜和低温原子探针断层扫描样品制备。

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