4.7 Article

On the effect of using collision/reaction cell (CRC) technology in single-particle ICP-mass spectrometry (SP-ICP-MS)

期刊

ANALYTICA CHIMICA ACTA
卷 1077, 期 -, 页码 95-106

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.aca.2019.05.077

关键词

Nanoparticles; Single-particle ICP-MS/(MS); Collision/reaction cell; Spectral overlap; Chemical resolution; Peak width

资金

  1. BOF-UGent
  2. Aragon Government (Fondo Social Europeo) [CTQ2015e64684P]
  3. MCIU/AEI//FEDER, UE [PGC2018-093753-B-I00]
  4. CNPq, Conselho Nacional de Desenvolvimiento Cientifico e Tecnologico - Brazil [232487/2014-6]
  5. Special Research fund of Ghent University BOF-UGent

向作者/读者索取更多资源

In this work, the effects of using collision/reaction cell (CRC) technology in quadrupole-based ICP-MS (ICP-QMS) instrumentation operated in single-particle (SP) mode have been assessed. The influence of (i) various CRC gases, (ii) gas flow rates, (iii) nanoparticle (NP) sizes and (iv) NP types was evaluated using Ag, Au and Pt NPs with both a traditional ICP-QMS instrument and a tandem ICP-mass spectrometer. It has been shown that using CRC technology brings about a significant increase in the NP signal peak width (from 0.5 up to 6 ms). This effect is more prominent for a heavier gas (e.g., NH3) than for a lighter one (e.g., H-2 or He). At a higher gas flow rate and/or for larger particle sizes > 100 nm), the NP signal duration was prolonged to a larger extent. This effect of using CRC technology has been further demonstrated by characterizing custom-made 50 and 200 nm Fe3O4 NPs (originally strongly affected by the occurrence of spectral overlap) using different CRC approaches (H-2 on-mass and NH3 mass-shift). The use of NH3 (monitoring of Fe as the Fe(NH3)(2)(+) reaction product ion at m/z = 90 amu) induces a significant peak broadening compared to that observed when using H-2 (6.10 +/- 1.60 vs. 0.94 +/- 0.49 ms). This extension of transit time can most likely be attributed to the collisions/interactions of the ion cloud generated by a single NP event with the CRC gas and it even precludes 50 nm Fe3O4 NPs to be detected when using the NH3 mass-shift approach. Based on these results, the influence of a longer peak width on the accuracy of SP-ICP-MS measurement data (NP size, particle number density and mass concentration) must be taken into account when using CRC technology as a means to overcome spectral overlap. To mitigate the potential detrimental effect of using CRC technology in the characterization of NPs via SP-ICP-MS(/MS), the use of light gases and low gas flow rates is recommended. (C) 2019 Elsevier B.V. All rights reserved.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.7
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据