Kimura, Jun-Ichi, Chang, Qing (2012) Origin of the suppressed matrix effect for improved analytical performance in determination of major and trace elements in anhydrous silicate samples using 200 nm femtosecond laser ablation sector-field inductively coupled plasma mass spectrometry. Journal of Analytical Atomic Spectrometry, 27 (9). 1549pp. doi:10.1039/c2ja10344c
Reference Type | Journal (article/letter/editorial) | ||
---|---|---|---|
Title | Origin of the suppressed matrix effect for improved analytical performance in determination of major and trace elements in anhydrous silicate samples using 200 nm femtosecond laser ablation sector-field inductively coupled plasma mass spectrometry | ||
Journal | Journal of Analytical Atomic Spectrometry | ||
Authors | Kimura, Jun-Ichi | Author | |
Chang, Qing | Author | ||
Year | 2012 | Volume | 27 |
Issue | 9 | ||
Publisher | Royal Society of Chemistry (RSC) | ||
DOI | doi:10.1039/c2ja10344cSearch in ResearchGate | ||
Generate Citation Formats | |||
Mindat Ref. ID | 5341999 | Long-form Identifier | mindat:1:5:5341999:8 |
GUID | 0 | ||
Full Reference | Kimura, Jun-Ichi, Chang, Qing (2012) Origin of the suppressed matrix effect for improved analytical performance in determination of major and trace elements in anhydrous silicate samples using 200 nm femtosecond laser ablation sector-field inductively coupled plasma mass spectrometry. Journal of Analytical Atomic Spectrometry, 27 (9). 1549pp. doi:10.1039/c2ja10344c | ||
Plain Text | Kimura, Jun-Ichi, Chang, Qing (2012) Origin of the suppressed matrix effect for improved analytical performance in determination of major and trace elements in anhydrous silicate samples using 200 nm femtosecond laser ablation sector-field inductively coupled plasma mass spectrometry. Journal of Analytical Atomic Spectrometry, 27 (9). 1549pp. doi:10.1039/c2ja10344c | ||
In | (2012) Journal of Analytical Atomic Spectrometry Vol. 27 (9) Royal Society of Chemistry (RSC) |
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