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用于表面采样元素分析的基质辅助等离子体雾化发射光谱法。

Matrix-Assisted Plasma Atomization Emission Spectrometry for Surface Sampling Elemental Analysis.

作者信息

Yuan Xin, Zhan Xuefang, Li Xuemei, Zhao Zhongjun, Duan Yixiang

机构信息

Research Center of Analytical Instrumentation, College of Chemistry, Sichuan University, Chengdu, China, 610064.

Research Center of Analytical Instrumentation, Key Laboratory of Bio-resource and Eco-environment, Ministry of Education, College of Life Science, Sichuan University, Chengdu, China, 610064.

出版信息

Sci Rep. 2016 Jan 14;6:19417. doi: 10.1038/srep19417.

Abstract

An innovative technology has been developed involving a simple and sensitive optical spectrometric method termed matrix-assisted plasma atomization emission spectrometry (MAPAES) for surface sampling elemental analysis using a piece of filter paper (FP) for sample introduction. MAPAES was carried out by direct interaction of the plasma tail plume with the matrix surface. The FP absorbs energy from the plasma source and releases combustion heating to the analytes originally present on its surface, thus to promote the atomization and excitation process. The matrix-assisted plasma atomization excitation phenomenon was observed for multiple elements. The FP matrix served as the partial energy producer and also the sample substrate to adsorb sample solution. Qualitative and quantitative determinations of metal ions were achieved by atomic emission measurements for elements Ba, Cu, Eu, In, Mn, Ni, Rh and Y. The detection limits were down to pg level with linear correlation coefficients better than 0.99. The proposed MAPAES provides a new way for atomic spectrometry which offers advantages of fast analysis speed, little sample consumption, less sample pretreatment, small size, and cost-effective.

摘要

已经开发出一种创新技术,它涉及一种简单且灵敏的光学光谱方法,称为基质辅助等离子体雾化发射光谱法(MAPAES),用于表面采样元素分析,使用一张滤纸(FP)进行样品引入。MAPAES通过等离子体尾羽与基质表面的直接相互作用来进行。滤纸从等离子体源吸收能量,并将燃烧热释放到原本存在于其表面的分析物上,从而促进雾化和激发过程。观察到多种元素出现基质辅助等离子体雾化激发现象。滤纸基质既是部分能量产生者,也是吸附样品溶液的样品基质。通过对元素钡、铜、铕、铟、锰、镍、铑和钇进行原子发射测量,实现了金属离子的定性和定量测定。检测限低至皮克水平,线性相关系数优于0.99。所提出的MAPAES为原子光谱分析提供了一种新方法,具有分析速度快、样品消耗少、样品预处理少、体积小和成本效益高的优点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff8b/4725919/607afd1d2536/srep19417-f1.jpg

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