首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Electric field enhanced sample preparation for synthetic polymer MALDI-TOF mass spectrometry via Induction Based Fluidics (IBF)
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Electric field enhanced sample preparation for synthetic polymer MALDI-TOF mass spectrometry via Induction Based Fluidics (IBF)

机译:通过基于感应的流体技术(IBF)的电场增强样品制备合成聚合物MALDI-TOF质谱

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摘要

MALDI-TOF mass spectroscopy is used in the characterization of synthetic polymers. MALDI allows for determination of: modal, most probable peak (M-P), molecular number average (M-N), molecular weight average (M-W), polydispersity (PD), and polymer spread (P-SP). We evaluate a new sample preparation method using Induction Based Fluidics (IBF) to kinetically launch and direct nanoliter volumes to a target without contact. IBF offers signal improvement via field enhanced crystallization. This is the first paper to discuss filed enhanced crystallization in MALDI sample preparation. IBF can increase signaloise (S/N) and signal intensity for polystyrene (PS), poly(methyl methacrylate) (PMMA), and poly(ethylene glycol) (PEG) across a mass range of 2500-92,000 Da showing more accurate P-SP, Increases in S/N range up to: 279% for PS, 140% for PMMA, and 660% for PEG. Signal intensities increased up to: 438% for PS, 115% for PMMA, and 166% for PEG. Cross-polarization microscopy indicates dramatic morphology differences between IBF and micropipette. Finally, we speculate as to why IBF nanoliter depositions afford higher S/N values in experiments conducted in different instrumental configurations even without optimization.
机译:MALDI-TOF质谱用于合成聚合物的表征。 MALDI可以确定:模态,最有可能的峰(M-P),分子量平均值(M-N),分子量平均值(M-W),多分散性(PD)和聚合物扩散(P-SP)。我们评估了一种新的样品制备方法,该方法使用基于感应的流体技术(IBF)动力学发射毫微升体积并将其直接引导至目标而无需接触。 IBF通过场增强结晶来改善信号。这是第一篇讨论MALDI样品制备中增强结晶的论文。 IBF可以在2500-92,000 Da的质量范围内提高聚苯乙烯(PS),聚甲基丙烯酸甲酯(PMMA)和聚乙二醇(PEG)的信噪比(S / N)和信号强度。 P-SP,信噪比提高幅度最大:PS 279%,PMMA 140%和PEG 660%。信号强度增加到:PS的438%,PMMA的115%和PEG的166%。交叉极化显微镜表明,IBF和微量移液器之间存在明显的形态差异。最后,我们推测为什么在没有优化的情况下,在不同的仪器配置下进行的实验中,IBF纳升沉积物能提供更高的S / N值。

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