首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Capabilities of fast data acquisition with microsecond time resolution in inductively coupled plasma mass spectrometry and identification of signal artifacts from millisecond dwell times during detection of single gold nanoparticles
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Capabilities of fast data acquisition with microsecond time resolution in inductively coupled plasma mass spectrometry and identification of signal artifacts from millisecond dwell times during detection of single gold nanoparticles

机译:电感耦合等离子体质谱法中具有微秒级时间分辨率的快速数据采集功能,以及在检测单个金纳米颗粒期间从毫秒停留时间识别信号伪像的功能

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摘要

In inductively coupled plasma mass spectrometry (ICP-MS), short transient signals originating from individual nanopartides are typically recorded in a time-resolved measurement with reduced dwell times in the millisecond time regime. This approach was termed single-particle ICP-MS in the past and used for particle counting and sizing but is not without limitations. In this work, a home-built data acquisition unit (DAQ) specifically tailored to the needs of single-particle ICP-MS applications was developed to study and alleviate some of these limitations. For best comparison, data were acquired simultaneously with both techniques. Each experiment was carried out as a conventional time-resolved measurement, while the DAQ directly probed the instrument's detection circuitry. Our DAQ features dwell times as low as 5 μs during continuous data acquisition and can be operated for virtually unlimited measurement time. Using a time resolution much higher than the typical duration of a particle-related ion cloud, the probability of measurement artifacts due to particle coincidence could be significantly reduced and the occurrence of split-particle events in fact was almost eliminated. Moreover, a duty cycle of 100% of the counting electronics improves the method's accuracy compared to the acquisition system of currently available ICP-Q-MS instruments. Fully time-resolved temporal profiles of transient signals originating from single gold nanoparticles as small as 10 nm are presented. The advantages and disadvantages of millisecond versus microsecond dwell times are critically discussed including measurement artifacts due to particle coincidence, split-particle events, and particle number concentration.
机译:在电感耦合等离子体质谱法(ICP-MS)中,通常在时间分辨的测量中记录源自单个纳米粒子的短瞬态信号,并在毫秒时间范围内减少驻留时间。该方法在过去被称为单颗粒ICP-MS,用于颗粒计数和定径,但并非没有限制。在这项工作中,开发了专门为满足单颗粒ICP-MS应用需求而量身定制的家用数据采集单元(DAQ),以研究和缓解其中的一些局限性。为了进行最佳比较,使用这两种技术同时获取了数据。每个实验均按常规的时间分辨测量进行,而DAQ直接探测仪器的检测电路。我们的DAQ在连续数据采集期间的停留时间低至5μs,并且可以在几乎无限的测量时间内运行。使用比粒子相关离子云的典型持续时间高得多的时间分辨率,可以显着降低由于粒子重合而导致的测量伪像的可能性,实际上几乎消除了分裂粒子事件的发生。此外,与当前可用的ICP-Q-MS仪器的采集系统相比,计数电子设备的100%的占空比提高了方法的准确性。呈现了完全时间分辨的瞬态信号的时间分布,该瞬态信号源自小至10 nm的单个金纳米颗粒。严格讨论了毫秒与微秒停留时间之间的优缺点,包括由于粒子重合,分裂粒子事件和粒子数浓度引起的测量伪影。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2016年第1期|135-144|共10页
  • 作者

    I. Strenge; C. Engelhard;

  • 作者单位

    University of Siegen, Department of Chemistry and Biology, Adolf-Reichwein-Str. 2, 57068 Siegen, Germany;

    University of Siegen, Department of Chemistry and Biology, Adolf-Reichwein-Str. 2, 57068 Siegen, Germany;

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