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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Application of a micro-droplet generator for an ICP-sector field mass spectrometer - optimization and analytical characterization
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Application of a micro-droplet generator for an ICP-sector field mass spectrometer - optimization and analytical characterization

机译:微滴发生器在ICP领域现场质谱仪中的应用-优化和分析表征

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摘要

A micro-droplet generator (µDG) sample introduction system was coupled to a sector field ICP-MS instrument to investigate the analytical figures of merit with respect to single cell analysis. The sector field instrument was operated for the first time in a fast scanning mode (E-scan) with the shortest time resolution of 100 µs to measure the single droplet time resolved and using the original detector in a pulse counting mode without modification of the existing electronics. For reduction of the droplet diameter a triple pulse mode of the droplet generator was applied and a droplet diameter down to 23 urn has been achieved for this investigation with a 100% transport efficiency of droplets. Signal duration times of single droplets of less than 500 µs have been measured. Overall detection efficiencies in the range of 10~(-3) counts per atom have been achieved and absolute limits of detection range between 120 ag for Fe and 1.1 ag for Mg as a mean value from 1000 droplet events.
机译:将微滴发生器(µDG)样品引入系统与扇形场ICP-MS仪器耦合,以研究单细胞分析的品质因数。扇区现场仪器首次以最短时间分辨率为100 µs的快速扫描模式(E-scan)操作,以测量分辨出的单个墨滴时间,并在脉冲计数模式下使用原始检测器,而无需修改现有的电子产品。为了减小液滴直径,应用了液滴发生器的三脉冲模式,并且对于该研究已经实现了低至23μm的液滴直径,并且液滴的输送效率为100%。已测量小于500 µs的单个液滴的信号持续时间。每个原子的总检测效率达到10〜(-3)个计数范围,Fe的绝对检测极限范围为120 ag,Mg的绝对检测限为1000 ag事件的平均值。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2013年第5期|646-656|共11页
  • 作者单位

    BAM Federal Institute for Materials Research and Testing, Richard-Willstaetter Str. 11, 12489, Berlin, Germany Tokyo Institute of Technology, Department of energy Sciences, 4259 Nagatsuta,Midori-ku, 226-8502 Yokohama, Japan;

    BAM Federal Institute for Materials Research and Testing, Richard-Willstaetter Str. 11, 12489, Berlin, Germany;

    BAM Federal Institute for Materials Research and Testing, Richard-Willstaetter Str. 11, 12489, Berlin, Germany;

    Tokyo Institute of Technology, Department of energy Sciences, 4259 Nagatsuta,Midori-ku, 226-8502 Yokohama, Japan;

    Thermo Fisher Scientific, Hanna-Kunath-Str. 11, 28199 Bremen, Germany;

    BAM Federal Institute for Materials Research and Testing, Richard-Willstaetter Str. 11, 12489, Berlin, Germany;

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