首页> 外文期刊>Bulletin of the Korean Chemical Society >The Matrix Effect of Biological Concomitant Element on the Signal Intensity of Ge, As, and Se in Inductively Coupled Plasma/Mass Spectrometry
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The Matrix Effect of Biological Concomitant Element on the Signal Intensity of Ge, As, and Se in Inductively Coupled Plasma/Mass Spectrometry

机译:电感耦合等离子体/质谱法中生物伴随元素对Ge,As和Se信号强度的基质效应

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摘要

The non-spectroscopic interference effects that occurred in inductively coupled plasma/mass spectrometry were studied for Ge, As and Se in human urine and serum. Many biological samples contain Na, K, Cl and organic compounds, which may cause the enhancement and depression on the analyte signal. The effect of 1% concomitant elements such as N, Cl, S, P, C, Na, and K on a 100 Ф/L germanium, arsenic and selenium signal has been investigated by ICP/MS. The interference effects were not in the same direction. It appeared that concomitant elements such as Cl, S, and C induce an enhancement effect, whereas N and P did not show any significant effect. And, Na and K caused a depression. We have found a link between the abundance of analytes and the ionization potential of concomitant elements (eV), except carbon and nitrogen.
机译:研究了电感耦合等离子体/质谱法对人尿液和血清中的锗,砷和硒的非光谱干扰作用。许多生物样品包含Na,K,Cl和有机化合物,这可能会导致分析物信号增强和降低。 ICP / MS研究了1%伴随元素(如N,Cl,S,P,C,Na和K)对100Ф/ L锗,砷和硒信号的影响。干扰作用方向不同。似乎伴随的元素如Cl,S和C会产生增强作用,而N和P则没有显示任何明显的作用。并且,Na和K引起抑郁症。我们发现,分析物的丰度与伴随元素(eV)的电离势之间存在联系,碳和氮除外。

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