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Method for the Routine Determination of Accurate Masses by Triple Quadrupole Mass Spectrometry

机译:三重四极杆质谱法常规测定精确质量的方法

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A new method for the measurement of accurate masses using direct infusion in an electrospray-triple quadrupole mass spectrometer is presented and compared to the traditional method using high-resolution mass spectrometry. The proposed method uses internal calibrants and post-acquisition calibration of the mass spectrum signal using the MassWorks software to determine accurate masses. Then, based on parameters such as elemental composition, number of double bond equivalents, and type of ion (even- or odd-electron), etc., a list of potential molecular formula candidates are generated and ranked according to spectral accuracy, (i.e., similarity between the calibrated profile and theoretical isotopic patterns). Experiments using six diverse synthesis products showed that mass accuracy in the Quattro Premier triple quadrupole mass spectrometer (QqQMS) was a?¤9.2 mDa and spectral accuracy was a?¥90.6%. According to both mass accuracy tolerance (?±10 mDa) and spectral accuracy, the correct molecular formula was ranked in the top seven compounds out of up to 32 potential candidates. When considering the context of the synthesis reaction, only one formula was possible. In summary, results showed that the measurement of spectral accuracy in a low-resolution instrument such as the triple quadrupole was strongly dependent on the signal intensity and the presence of interfering peaks in the profile mass range window. This study suggests that use of triple quadrupole mass spectrometry followed by post-acquisition calibration can be an economical and robust approach compared to the traditional method using high-resolution mass spectrometers for the measurement of accurate masses in routine applications using small organic molecules at microgram-per-litter concentrations in relatively clean matrices.
机译:提出了一种在电喷雾三重四极杆质谱仪中直接注入法测量准确质量的新方法,并将其与使用高分辨率质谱法的传统方法进行了比较。所提出的方法使用内部校准物,并使用MassWorks软件对质谱信号进行采集后校准,以确定准确的质量。然后,基于元素组成,双键当量数和离子类型(偶数电子或奇数电子)等参数,生成潜在的分子式候选物列表,并根据光谱精度进行排序(即,校正后的剖面和理论同位素模式之间的相似性)。使用六种不同的合成产物进行的实验表明,Quattro Premier三重四极杆质谱仪(QqQMS)的质量准确度约为9.2 mDa,光谱准确度约为90.6%。根据质量准确度公差(?±10 mDa)和光谱准确度,正确的分子式在多达32种潜在候选物中排名前7位。考虑到合成反应的背景,只有一个公式是可能的。总而言之,结果表明,在低分辨率仪器(例如三重四极杆)中,光谱准确度的测量很大程度上取决于信号强度以及轮廓质量范围窗口中干扰峰的存在。这项研究表明,与使用高分辨率质谱仪在常规应用中使用微克级有机小分子测量准确质量的传统方法相比,使用三重四极杆质谱联用并进行采集后校准可能是一种经济且可靠的方法。相对干净的基质中每窝的浓度。

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