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Using nanoparticles to determine the transport efficiency of microflow and nanoflow nebulizers in inductively coupled plasma-mass spectrometry

机译:使用纳米颗粒确定电感耦合等离子体质谱法中微流和纳流雾化器的传输效率

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摘要

In this study we have developed a procedure that allows for the convenient determination of nebulization transport efficiency (TE%) of micro- and nano-flows used with inductively coupled plasma-mass spectrometry (ICP-MS). The approach involves the use of an aqueous suspension containing 60 nm Au nanoparticles (NPs), originating from a NIST reference material, and an ICP-MS operating in the single particle mode (short dwell times and dilute samples) for the detection of individual NPs. Various flow rates ranging from 500 nL min~(-1) to 10 μL min~(-1) using various modified pneumatic nebulizers were tested and transport efficiencies were determined. In addition, the overall system sensitivity was determined for both Au NP suspensions and dissolved metal solutions. Application of this approach has the potential to allow for the much needed TE% comparisons of the various micro-ano-flow systems that have been developed or will be developed in the future. We anticipate that this will help micro-/ capillary-ano-liquid chromatography ICP-MS to achieve significant advancements in the areas of metallomics, metatlomproteomics and proteomics.
机译:在这项研究中,我们开发了一种程序,可以方便地确定与电感耦合等离子体质谱(ICP-MS)一起使用的微流和纳流的雾化传输效率(TE%)。该方法涉及使用含有60 nm Au纳米颗粒(NPs)的水悬浮液(源自NIST参考材料)和以单颗粒模式(短停留时间和稀样品)运行的ICP-MS检测单个NPs 。使用各种改进的气动雾化器测试了从500 nL min〜(-1)到10μLmin〜(-1)的各种流速,并确定了输送效率。另外,确定了Au NP悬浮液和溶解的金属溶液的整体系统灵敏度。这种方法的应用具有潜力,可以对已经开发或将来将要开发的各种微/纳流系统进行非常需要的TE%比较。我们预计这将有助于微/毛细管/纳米液相色谱ICP-MS在金属学,元组蛋白质组学和蛋白质组学领域取得重大进展。

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    《Journal of Analytical Atomic Spectrometry》 |2016年第4期|1041-1046|共6页
  • 作者单位

    Environmental Chemical Processes Laboratory, Department of Chemistry, University of Crete, Voutes Campus, Heraklion 71003, Greece,Institute of Molecular Biology and Biotechnology - FoRTH, Department of Protein Structure and Proteomics Facility, Heraklion, Crete;

    Environmental Chemical Processes Laboratory, Department of Chemistry, University of Crete, Voutes Campus, Heraklion 71003, Greece;

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