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首页> 外文期刊>Analytical chemistry >Matrix-Assisted Laser Desorption/lonization Time-of-Flight Mass Spectrometry Intel-laboratory Comparison of Mixtures of Polystyrene with Different End Groups:Statistical Analysis of Mass Fractions and Mass Moments
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Matrix-Assisted Laser Desorption/lonization Time-of-Flight Mass Spectrometry Intel-laboratory Comparison of Mixtures of Polystyrene with Different End Groups:Statistical Analysis of Mass Fractions and Mass Moments

机译:基质辅助激光解吸/电离飞行时间质谱英特尔实验室对不同端基聚苯乙烯混合物的比较:质量分数和质量矩的统计分析

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A matrix-assisted laser desorption/ionization time-of-flight mass spectrometry(MALDI-TOF MS)interlaboratory comparison was conducted on mixtures of synthetic polymers having the same repeat unit and closely matching molecular mass distributions but with different end groups.The interlaboratory comparison was designed to see how well the results from a group of experienced laboratories would agree on the mass fraction,and molecular mass distribution,of each polymer in a series of binary mixtures.Polystyrenes of a molecular mass near 9000 u were used.Both polystyrenes were initiated with the same butyl initiator;however,one was terminated with-H(termed PSH)and the other was terminated with-CH_2CH_2OH(termed PSOH).End group composition of the individual polymers was checked by MALDI-TOF MS and by nuclear magnetic resonance(NMR).Five mixtures were created gravimetrically with mass ratios between 95:5 and 10:90 PSOH/PSH.Mixture compositions where measured by NMR and by Fourier transform infrared spectrometry(FT-IR).NMR and FT-IR were used to benchmark the performance of these methods in comparison to MALDI-TOF MS.Samples of these mixtures were sent to any institution requesting it.A total of 14 institutions participated.Analysis of variance was used to examine the influences of the independent parameters(participating laboratory,MALDI matrix,instrument manufacturer,TOF mass separation mode)on the measured mass fractions and molecular mass distributions for each polymer in each mixture.Two parameters,participating laboratory and instrument manufacturer,were determined to have a statistically significant influence.MALDI matrix and TOF mass separation mode(linear or reflec-tron)were found not to have a significant influence.Improper mass calibration,inadequate instrument optimization with respect to high signal-to-noise ratio across the entire mass range,and poor data analysis methods(e.g.,baseline subtraction and peak integration)seemed to be the greatest obstacles in the correct application of MALDI-TOF MS to this problem.Each of these problems can be addressed with proper laboratory technique.
机译:对具有相同重复单元,分子质量分布相近但端基不同的合成聚合物混合物进行基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)实验室间比较。设计用于观察一组经验丰富的实验室的结果在一系列二元混合物中每种聚合物的质量分数和分子量分布上的吻合程度。使用分子量接近9000 u的聚苯乙烯。用相同的丁基引发剂引发;但是,一个用-H(称为PSH)终止,另一个用-CH_2CH_2OH(称为PSOH)终止。通过MALDI-TOF MS和核磁检查单个聚合物的端基组成重量分析法制得五种混合物,质量比为95:5至10:90 PSOH / PSH。混合物组成通过NMR和傅里叶变换测量与MALDI-TOF MS相比,使用NMR和FT-IR对这些方法的性能进行基准测试,并将这些混合物的样品发送至任何要求该方法的机构,共有14个机构参加。使用方差分析来检验独立参数(参与实验室,MALDI基质,仪器制造商,TOF质量分离模式)对每种混合物中每种聚合物的测量质量分数和分子质量分布的影响。两个参数参与实验室和仪器确定制造商具有统计学上的重大影响。发现MALDI矩阵和TOF质量分离模式(线性或反射式)没有重大影响。质量校准不当,针对高信噪比的仪器优化不足整个质量范围内的比率以及不良的数据分析方法(例如,基线减法和峰积分)似乎是最大的障碍。 MALDI-TOF MS在此问题上的正确应用。可以使用适当的实验室技术来解决其中的每个问题。

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