核显微技术:一种无损痕量元素分析和生物材料制图的方法

Stephen Juma Mulware
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引用次数: 18

摘要

许多生物材料的特性往往取决于存在于基质中的微量元素的空间分布和浓度。多年来,科学家们尝试了各种各样的技术,包括经典的物理和化学分析技术,每种技术都有相对的准确性。然而,随着空间敏感亚微米光束的发展,利用聚焦质子束进行生物材料元素分析的核微探针技术取得了显著的成功。本文讨论了微量元素分析常用的微量探针技术STIM、RBS和PIXE的基本原理。讨论了样品制备、检测、数据收集和分析的细节。最后,介绍了该技术在玉米根系元素分布和浓度分析中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Review of Nuclear Microscopy Techniques: An Approach for Nondestructive Trace Elemental Analysis and Mapping of Biological Materials
The properties of many biological materials often depend on the spatial distribution and concentration of the trace elements present in a matrix. Scientists have over the years tried various techniques including classical physical and chemical analyzing techniques each with relative level of accuracy. However, with the development of spatially sensitive submicron beams, the nuclear microprobe techniques using focused proton beams for the elemental analysis of biological materials have yielded significant success. In this paper, the basic principles of the commonly used microprobe techniques of STIM, RBS, and PIXE for trace elemental analysis are discussed. The details for sample preparation, the detection, and data collection and analysis are discussed. Finally, an application of the techniques to analysis of corn roots for elemental distribution and concentration is presented.
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