Audinot Jean-Nicolas, Philipp Patrick, De Castro Olivier, Biesemeier Antje, Hoang Quang Hung, Wirtz Tom
Advanced Instrumentation for Nano-Analytics (AINA), MRT Department, Luxembourg Institute of Science and Technology (LIST), 41 rue du Brill, L-4422 Belvaux, Luxembourg.
Rep Prog Phys. 2021 Sep 15;84(10). doi: 10.1088/1361-6633/ac1e32.
This paper is a review on the combination between Helium Ion Microscopy (HIM) and Secondary Ion Mass Spectrometry (SIMS), which is a recently developed technique that is of particular relevance in the context of the quest for high-resolution high-sensitivity nano-analytical solutions. We start by giving an overview on the HIM-SIMS concept and the underlying fundamental principles of both HIM and SIMS. We then present and discuss instrumental aspects of the HIM and SIMS techniques, highlighting the advantage of the integrated HIM-SIMS instrument. We give an overview on the performance characteristics of the HIM-SIMS technique, which is capable of producing elemental SIMS maps with lateral resolution below 20 nm, approaching the physical resolution limits, while maintaining a sub-nanometric resolution in the secondary electron microscopy mode. In addition, we showcase different strategies and methods allowing to take profit of both capabilities of the HIM-SIMS instrument (high-resolution imaging using secondary electrons and mass filtered secondary sons) in a correlative approach. Since its development HIM-SIMS has been successfully applied to a large variety of scientific and technological topics. Here, we will present and summarise recent applications of nanoscale imaging in materials research, life sciences and geology.
本文是一篇关于氦离子显微镜(HIM)与二次离子质谱(SIMS)相结合的综述,这是一种最近开发的技术,在寻求高分辨率、高灵敏度纳米分析解决方案的背景下具有特殊意义。我们首先概述HIM-SIMS概念以及HIM和SIMS的基本原理。然后我们介绍并讨论HIM和SIMS技术的仪器方面,突出集成HIM-SIMS仪器的优势。我们概述了HIM-SIMS技术的性能特征,该技术能够生成横向分辨率低于20纳米的元素SIMS图,接近物理分辨率极限,同时在二次电子显微镜模式下保持亚纳米分辨率。此外,我们展示了不同的策略和方法,允许以相关方式利用HIM-SIMS仪器的两种功能(使用二次电子的高分辨率成像和质量过滤二次离子)。自开发以来,HIM-SIMS已成功应用于各种科学和技术主题。在这里,我们将展示并总结纳米级成像在材料研究、生命科学和地质学中的最新应用。