首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Characterization of Synthetic Polymers via Matrix Assisted Laser Desorption Ionization Time of Flight (MALDI-TOF) Mass Spectrometry
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Characterization of Synthetic Polymers via Matrix Assisted Laser Desorption Ionization Time of Flight (MALDI-TOF) Mass Spectrometry

机译:通过基质辅助激光解吸电离飞行时间(MALDI-TOF)质谱表征合成聚合物

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摘要

There are many techniques that can be employed in the characterization of synthetic homopolymers, but few provide as useful of information for end group analysis as matrix-assisted laser desorption ionization time of flight mass spectrometry (MALDI-TOF MS). This tutorial demonstrates methods for optimization of the sample preparation, spectral acquisition, and data analysis of synthetic polymers using MALDI-TOF MS. Critical parameters during sample preparation include the selection of the matrix, identification of an appropriate cationization salt, and tuning the relative proportions of the matrix, cation, and analyte. The acquisition parameters, such as mode (linear or reflector), polarization (positive or negative), acceleration voltage, and delay time, are also important. Given some knowledge of the chemistry involved to synthesize the polymer and optimizing both the data acquisition parameters and the sample preparation conditions, spectra should be obtained with sufficient resolution and mass accuracy to enable the unambiguous determination of the end groups of most homopolymers (masses below 10,000) in addition to the repeat unit mass and the overall molecular weight distribution. Though demonstrated on a limited set of polymers, these general techniques are applicable to a much wider range of synthetic polymers for determining mass distributions, though end group determination is only possible for homopolymers with narrow dispersity.
机译:有许多技术可用于合成均聚物的表征,但很少有技术能像基质辅助激光解吸电离飞行时间质谱仪(MALDI-TOF MS)一样,为端基分析提供有用的信息。本教程演示了使用MALDI-TOF MS优化样品制备,光谱采集和合成聚合物数据分析的方法。样品制备过程中的关键参数包括基质的选择,合适的阳离子盐的识别以及基质,阳离子和分析物的相对比例的调整。采集参数,例如模式(线性或反射器),极化(正或负),加速电压和延迟时间也很重要。在了解有关合成聚合物并优化数据采集参数和样品制备条件的化学方面的知识后,应以足够的分辨率和质量准确度获得光谱,从而能够明确测定大多数均聚物的端基(质量数低于10,000) )以及重复单元质量和整体分子量分布。尽管已在一组有限的聚合物上进行了证明,但这些通用技术适用于测定质量分布的范围更广的合成聚合物,尽管端基测定仅适用于分散性较窄的均聚物。

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