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NanoSIMS Imaging and Analysis in Materials Science
Annual Review of Analytical Chemistry ( IF 8 ) Pub Date : 2020-06-12 , DOI: 10.1146/annurev-anchem-092019-032524
Kexue Li 1 , Junliang Liu 2 , Chris R.M. Grovenor 2 , Katie L. Moore 1
Affiliation  

High-resolution SIMS analysis can be used to explore a wide range of problems in material science and engineering materials, especially when chemical imaging with good spatial resolution (50–100 nm) can be combined with efficient detection of light elements and precise separation of isotopes and isobaric species. Here, applications of the NanoSIMS instrument in the analysis of inorganic materials are reviewed, focusing on areas of current interest in the development of new materials and degradation mechanisms under service conditions. We have chosen examples illustrating NanoSIMS analysis of grain boundary segregation, chemical processes in cracking, and corrosion of nuclear components. An area where NanoSIMS analysis shows potential is in the localization of light elements, in particular, hydrogen and deuterium. Hydrogen embrittlement is a serious problem for industries where safety is critical, including aerospace, nuclear, and oil/gas, so it is imperative to know where in the microstructure hydrogen is located. By charging the metal with deuterium, to avoid uncertainty in the origin of the hydrogen, the microstructural features that can trap hydrogenic species, such as precipitates and grain and phase boundaries, can be determined by NanoSIMS analysis on a microstructurally relevant scale.

中文翻译:


材料科学中的NanoSIMS成像和分析

高分辨率SIMS分析可用于探索材料科学和工程材料中的各种问题,尤其是当具有良好空间分辨率(50–100 nm)的化学成像可以与有效的轻元素检测和同位素的精确分离相结合时和等压物种。在此,对NanoSIMS仪器在无机材料分析中的应用进行了综述,重点关注了在新材料的开发和使用条件下降解机理方面当前关注的领域。我们选择了一些示例来说明NanoSIMS分析的晶界偏析,裂纹中的化学过程以及核成分的腐蚀。NanoSIMS分析显示出潜力的领域是轻元素的定位,特别是氢和氘。对于安全至关重要的行业,包括航空航天,核能和石油/天然气,氢脆化是一个严重的问题,因此必须知道氢在微结构中的位置。通过将金属充入氘,以避免不确定氢的来源,可以通过NanoSIMS分析在微观结构相关的尺度上确定可以捕获氢物种的微观结构特征,例如沉淀物,晶粒和相界。

更新日期:2020-06-12
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