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通过使用宽质量电荷窗口和气相离子/离子反应的直接注入电喷雾质谱/质谱法对均聚物分布进行表征。

Characterization of Homopolymer Distributions via Direct Infusion ESI-MS/MS using Wide Mass-to-Charge Windows and Gas-Phase Ion/Ion Reactions.

机构信息

Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907, United States.

出版信息

J Am Soc Mass Spectrom. 2022 Apr 6;33(4):704-713. doi: 10.1021/jasms.2c00001. Epub 2022 Feb 24.

Abstract

A hallmark of electrospray ionization (ESI) of large polymeric molecules is its tendency to generate charge state distributions. When a distribution of polymers is subjected to ESI, the charge state distribution of each component can lead to a mass spectrum composed of a highly congested mixture of ions with overlapping mass-to-charge (/) ratios. When the polymers are composed of a common monomeric unit (i.e., a homopolymer), the overlap of the charge state distributions of the polymer components can give rise to striking spectral patterns with a dense central cluster of peaks having similar / values and wing-like patterns on either side. We refer to the central cluster of peaks as an "Emerald City," with a nod to the Wizard of Oz, combining the wings as an "Emerald City pattern". The Emerald City pattern can appear in the mass spectrum of any homopolymer with distributions of charge states and sizes. Various parameters were studied individually for their contributions to the appearance of Emerald City patterns. Dextran samples were used to demonstrate the spectral pattern experimentally, and a web-based tool was developed to validate the findings. We also proposed to use direct infusion ESI-MS coupled with segmented / windows that encompass Emerald Cities followed by gas-phase proton transfer reactions for characterizing poly disperse synthetic polymer samples. Poly(ethylenimine) samples were used as model systems to demonstrate the approach. The proposed strategy improves sample characterization relative to conventional zero-charge deconvolution or proton transfer reactions without prior mass-selected / windows.

摘要

电喷雾电离(ESI)的一个特点是其产生电荷状态分布的趋势。当聚合物分布受到 ESI 时,每个成分的电荷状态分布可能导致由具有重叠质荷比(/)的高度拥挤的离子混合物组成的质谱。当聚合物由常见的单体单元组成(即均聚物)时,聚合物成分的电荷状态分布的重叠会导致具有密集中心峰簇的明显光谱图案,具有相似的/值,并且两侧具有翼状图案。我们将中心峰簇称为“翡翠城”,向《绿野仙踪》中的巫师致敬,将翅膀组合成“翡翠城图案”。翡翠城图案可以出现在任何具有电荷状态和大小分布的均聚物的质谱中。研究了各种参数,以单独研究它们对翡翠城图案出现的贡献。葡聚糖样品用于通过实验演示光谱图案,并开发了一个基于网络的工具来验证这些发现。我们还建议使用直接注入 ESI-MS 与包含翡翠城的分段/窗口结合,然后进行气相质子转移反应,用于表征多分散合成聚合物样品。聚(亚乙基亚胺)样品用作模型系统来证明该方法。与传统的零电荷解卷积或质子转移反应相比,该提出的策略提高了样品的特征化,而无需预先进行质量选择的/窗口。

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Mass Analysis of Macro-molecular Analytes via Multiply-Charged Ion Attachment.多电荷离子附着的宏观分子分析物的质量分析
Anal Chem. 2020 Dec 15;92(24):16301-16306. doi: 10.1021/acs.analchem.0c04335. Epub 2020 Dec 4.
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Unraveling the mechanism of electrospray ionization.解析电喷雾离子化的机制。
Anal Chem. 2013 Jan 2;85(1):2-9. doi: 10.1021/ac302789c. Epub 2012 Nov 20.

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