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Overcoming interferences in inductively coupled plasma mass spectrometry via gas-flow modulation - Part 1. Fourier transform methods

机译:通过气流调制克服电感耦合等离子体质谱法中的干扰-第1部分。傅里叶变换方法

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摘要

The first of two new methods for reducing oxide interferences in inductively coupled plasma mass spectrometry is described. This method utilizes careful manipulation of the central-channel gas flow to impart distinguishable frequency-specific behavior to analyte and oxide species. Subsequently, application of a Fourier transform ( FT) permits contributions from the analyte and oxide superimposed at a given mass to be unraveled. Through application of this correction method, a greater than ten-fold error at m/z 156 caused by the interference of (CeO+)-Ce-140-O-16 on Gd-156(+) has been effectively eliminated. This correction method is well suited for overcoming multiple analyte-oxide interferences ( most notably where monoisotopic elements have been compromised) in a simultaneous manner. Although a time-of-flight mass analyzer was utilized here, this correction method is well suited also for implementation with scan-based systems ( e. g. quadrupoles and sector-field mass spectrometers).
机译:描述了减少电感耦合等离子体质谱法中氧化物干扰的两种新方法中的第一种。该方法利用对中央通道气流的精心操纵,为分析物和氧化物提供了独特的频率特定行为。随后,傅里叶变换(FT)的应用允许分析物和氧化物在给定质量下的叠加作用。通过应用此校正方法,有效消除了(CeO +)-Ce-140-O-16对Gd-156(+)的干扰导致的m / z 156处十倍以上的误差。此校正方法非常适合同时克服多种分析物-氧化物干扰(最明显的是单同位素元素受到损害的情况)。尽管这里使用了飞行时间质量分析器,但是该校正方法也非常适合用基于扫描的系统(例如,四极杆和扇区场质谱仪)来实施。

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