American Journal of Analytical Chemistry

American Journal of Analytical Chemistry

ISSN Print: 2156-8251
ISSN Online: 2156-8278
www.scirp.org/journal/ajac
E-mail: ajac@scirp.org
"Effect of Sample Matrix on Radial and Axial Profiles of Ion Abundance in Inductively Coupled Plasma Mass Spectrometry"
written by Clarisse Mariet, Francine Carrot, Mélanie Moskura,
published by American Journal of Analytical Chemistry, Vol.2 No.7, 2011
has been cited by the following article(s):
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[2] Sample preparation and calibration optimization for ICP-MS analysis of copper, zinc, selenium, rubidium, strontium, magnesium, iron, molybdenum and barium?in human serum
Bulgarian Chemical Communications, 2019
[3] Matrix complexity effect on platinum group metals analysis using inductively coupled plasma optical emission spectrometry
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[4] Fast abiotic sorption of selenates (SeO42-) in soils: pitfalls of batch sorption data acquired by inductively coupled plasma quadrupole mass spectrometry (ICP-QMS)
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[5] Análisis multilemental de minerales lateríticos pro ICP-OES. Efectos matriz, su reducción y posibles mecanismos
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[6] Matrix Effects using an ICP-MS with a Single Positive Ion Lens and Grounded Stop: Analyte Mass Dependent?
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[7] An ICP index for ICP-MS determinations–new selection rules for internal standards in ICP-MS determinations and carbon enhancement effect
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[8] Determination of ultra-trace elements in human plasma or serum by ICP-MS using sodium in the presence of carbon as a single calibration matrix-match component
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[9] FOR INDUCTIVELY COUPLED PLASMA MASS SPECTROMETRY
Diagnostic studies of ion beam formation in inductively coupled plasma mass spectrometry with the collision reaction interface, 2015
[10] Rapid Determination of Trace and Ultra Trace Level Elements in Diverse Silicate Rocks in Pressed Powder Pellet Targets by LA‐ICP‐MS using a Matrix‐Independent …
Geostandards and Geoanalytical Research, 2014
[11] Rapid Determination of Trace and Ultra Trace Level Elements in Diverse Silicate Rocks in Pressed Powder Pellet Targets by LA‐ICP‐MS using a Matrix‐Independent Protocol
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