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首页> 外文期刊>Analytical and bioanalytical chemistry >Accurate mass measurements and ultrahigh-resolution: Evaluation of different mass spectrometers for daily routine analysis of small molecules in negative electrospray ionization mode
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Accurate mass measurements and ultrahigh-resolution: Evaluation of different mass spectrometers for daily routine analysis of small molecules in negative electrospray ionization mode

机译:精确的质量测量和超高分辨率:在负电喷雾电离模式下,对用于小分子日常分析的各种质谱仪进行评估

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Six mass spectrometers based on different mass analyzer technologies, such as time-of-flight (TOF), hybrid quadrupole-TOF (Q-TOF), orbitrap, Fourier transform ion cyclotron resonance (FT-ICR), and triple quadrupole (QqQ), installed at independent laboratories have been tested during a single day of work for the analysis of small molecules in negative electrospray ionization (ESI) mode. The uncertainty in the mass measurements obtained from each mass spectrometer has been determined by taking the precision and accuracy of replicate measurements into account. The present study is focused on calibration processes (before, after, and during the mass measurement), the resolving power of the mass spectrometers, and the data processing for obtaining elemental formulae. The mass range between m/z 100 and 600 has been evaluated with a mix of four standards. This mass range includes small molecules usually detected in food and environmental samples. Negative ESI has been tested as there is almost no data on accurate mass (AM) measurements in this mode. Moreover, it has been used because it is the ESI mode for analysis of many compounds, such as pharmaceutical, herbicides, and fluorinated compounds. Natural organic matter has been used to demonstrate the significance of ultrahigh-resolution in complex mixtures. Sub-millidalton accuracy and precision have been obtained with Q-TOF, FT-ICR, and orbitrap achieving equivalent results. Poorer accuracy and precision have been obtained with the QqQ used: 11 mDa root-mean-square error and 6-11 mDa standard deviation. Some advice and requirements for daily AM routine analysis are also discussed here. [Figure not available: see fulltext.]
机译:六个基于不同质量分析器技术的质谱仪,例如飞行时间(TOF),混合四极杆TOF(Q-TOF),轨道飞行器,傅立叶变换离子回旋共振(FT-ICR)和三重四极杆(QqQ)安装在独立实验室中的,已经经过一天的测试,以负电喷雾电离(ESI)模式分析小分子。已通过考虑重复测量的精度和准确性确定了从每个质谱仪获得的质量测量结果的不确定性。本研究的重点是校准过程(在质量测量之前,之后和期间),质谱仪的分辨能力以及用于获得元素公式的数据处理。 m / z 100和600之间的质量范围已通过四种标准的混合评估。该质量范围包括通常在食品和环境样品中检测到的小分子。负ESI已经过测试,因为在此模式下几乎没有关于精确质量(AM)测量的数据。此外,之所以使用它是因为它是用于分析许多化合物(例如药物,除草剂和氟化化合物)的ESI模式。天然有机物已被用于证明复杂混合物中超高分辨率的重要性。使用Q-TOF,FT-ICR和orbitrap获得亚毫达尔顿的精度和精密度,可达到同等的结果。使用所使用的QqQ可获得较差的精度和精度:11 mDa均方根误差和6-11 mDa标准偏差。此处还讨论了日常AM日常分析的一些建议和要求。 [图不可用:请参见全文。]

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