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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Migration of Ag, Cd and Cu into highly oriented pyrolytic graphite and pyrolytic coated graphite
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Migration of Ag, Cd and Cu into highly oriented pyrolytic graphite and pyrolytic coated graphite

机译:Ag,Cd和Cu迁移到高度取向的热解石墨和热解涂层石墨中

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摘要

Migration of Cd, Cu and Ag from solution deposited samples of the respective nitrates into highly oriented pyrolytic graphite (HOPG) was studied using electrothermal atomic absorption spectroscopy (ETAAS) with platform vaporization. Metal migration was verified by removing the top layers of the HOPG platform after the sample had dried and performing the analysis using ETAAS The results obtained suggest that the metals or their salts migrate into HOPG only when the sample solutions are deposited on those areas of the platform that have surface imperfections The surface blemishes can be seen as tiny lines on the otherwise smooth surface of the HOPG platform. One possible driving force for the migration could be simple capillary action; however, additional information is needed to establish the true mechanism. The effect of metal migration into graphite on atomic absorption profiles was also evaluated. This effect was studied by comparing the signals obtained after the sample had been deposited eitheron the imperfections or on the smooth areas of the HOPG platform. In addition, samples were atomized from both sides of a pyrolytic coated platform in which one of the sides had been roughened with an abrasive material to expose the electrographite Themain effect of metal migration on the absorption profiles seems to be an increased tailing of the back edge of the signals. This could suggest a secondary generation function limited by the rate of diffusion of the metal back to the substrate surface andsubsequent vaporization.
机译:使用平台蒸发的电热原子吸收光谱法(ETAAS)研究了Cd,Cu和Ag从相应硝酸盐的溶液沉积样品向高取向热解石墨(HOPG)的迁移。通过在样品干燥后去除HOPG平台的顶层并使用ETAAS进行分析来验证金属迁移。获得的结果表明,仅当样品溶液沉积在平台的那些区域上时,金属或其盐才会迁移到HOPG中。具有表面缺陷的表面瑕疵可以看成是HOPG平台原本光滑的表面上的细线。迁移的一种可能的驱动力可能是简单的毛细管作用。但是,需要更多信息来建立真正的机制。还评估了金属迁移到石墨中对原子吸收分布的影响。通过比较样品沉积在HOPG平台的缺陷或光滑区域上后获得的信号来研究这种效果。此外,样品是从热解涂层平台的两侧雾化的,该平台的一侧已用磨料磨光以暴露出石墨。金属迁移对吸收曲线的主要影响似乎是后缘的拖尾增加的信号。这可能暗示了第二代生成功能受到金属扩散回基板表面的速率和随后的汽化的限制。

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