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电子能量的基本原理及其在材料研究中的应用 被引量:1
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作者 杨云 宋西平 《理化检验(物理分册)》 CAS 2014年第1期19-24,共6页
电子能量损失谱(EELS)是一种集材料元素分析和元素成像为一体的现代分析技术,由于其分析精度高、对碳、氮、氧、硼等轻元素敏感,因此被越来越多地应用于材料研究领域,并且由于EELS能反映原子外层的电子状态,还可被用于原子价态变化分析... 电子能量损失谱(EELS)是一种集材料元素分析和元素成像为一体的现代分析技术,由于其分析精度高、对碳、氮、氧、硼等轻元素敏感,因此被越来越多地应用于材料研究领域,并且由于EELS能反映原子外层的电子状态,还可被用于原子价态变化分析。介绍了EELS的基本原理、基本组成、基本功能以及在材料研究中的应用。结合与其他分析技术之间的比较,对EELS技术在材料研究中的作用进行了评价。 展开更多
关键词 电子能量损失谱 基本原理 应用 材料元素分析 厚度测量
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Simple and cost-effective methods for precise analysis of trace element abundances in geological materials with ICP-MS 被引量:22
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作者 Shuo Chen Xiaohong Wang +7 位作者 Yaoling Niu Pu Sun Meng Duan Yuanyuan Xiao Pengyuan Guo Hongmei Gong Guodong Wang Qiqi Xue 《Science Bulletin》 SCIE EI CAS CSCD 2017年第4期277-289,共13页
Inductively coupled plasma mass spectrometry (ICP-MS) is the most commonly used technique to deter- mine the abundances of trace elements in a wide range of geological materials. However, incomplete sample digestion... Inductively coupled plasma mass spectrometry (ICP-MS) is the most commonly used technique to deter- mine the abundances of trace elements in a wide range of geological materials. However, incomplete sample digestion, isobaric interferences and instrumental drift remain obvious problems that must be overcome in order to obtain precise and accurate results, For this reason, we have done many experi- ments and developed a set of simple, cost-effective and practical methods widely applicable for precise and rapid determination of trace element abundances in geological materials using ICP-MS. Commonly used high-pressure digestion technique is indeed effective in decomposing refractory phases, but this inevitably produces fluoride complexes that create new problems. We demonstrate that the fluoride complexes formed during high-pressure digestion can be readily re-dissolved using high-pressure vessel at 190 ℃ for only 2 h for 50 mg sample. In the case of isobaric interferences, although oxide (e.g., MO^+/M^+) and hydroxide (e.g., MO^+/M^+) productivity is variable between runs, the (MO^+/M^+)/(CeO^+/Ce^+) and (MOH^+/M^+)/(CeO^+/Ce^+) ratios remain constant, making isobaric interference correction for all other elements of interest straightforward, for which we provide an easy-to-use off-line procedure. We also show that mass-time-intensity drift curve is smooth as recognized previously, for which the correction can be readily done by analyzing a quality-control (QC) solution and using off-line Excel VBA procedure without internal standards. With these methods, we can produce data in reasonable agreement with rec- ommended values of international rock reference standards with a relative error of 〈8% and precision generally better than 5%. Importantly, compared to the widely used analytical practice, we can effectively save 〉60% of time (e.g., 〈24 h vs. 〉60 h). 展开更多
关键词 Inductively coupled plasma mass spectrometry High-pressure digestion Oxide and hydroxide interferences Instrumental drift Correction methods Trace elements
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