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Structural Characterization of Dissolved Organic Matter at the Chemical Formula Level Using TIMS-FT-ICR MS/MS

机译:使用TIMS-FT-ICR MS / MS的化学式水平溶解有机物的结构表征

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TIMS-FT-ICR MS is an important alternative to study the isomeric diversity and elemental composition of complex mixtures. While the chemical structure of many compounds in the dissolved organic matter (DOM) remains largely unknown, the high structural diversity has been described at the molecular level using chemical formulas. In this study, we further push the boundaries of TIMS-FT-ICR MS by performing chemical formula-based ion mobility and tandem MS analysis for the structural characterization of DOM. The workflow described is capable to mobility select (R similar to 100) and isolate molecular ion signals (Delta m/z = 0.036) in the ICR cell, using single-shot ejections after broadband ejections and MS/MS based on sustained off-resonance irradiation collision-induced dissociation (SORI-CID). The workflow results are compared to alternative TIMS-q-FT-ICR MS/MS experiments with quadrupole isolation at nominal mass (similar to 1 Da). The technology is demonstrated with isomeric and isobaric mixtures (e.g., 4-methoxy-1-naphthoic acid, 2-methoxy-1-naphthoic acid, decanedioic acid) and applied to the characterization of DOM. The application of this new methodology to the analysis of a DOM is illustrated by the isolation of the molecular ion [C18H18O10-H]- in the presence of other isobars at nominal mass 393. Five IMS bands were assigned to the heterogeneous ion mobility profile of [C18H18O10-H](-), and candidate structures from the PubChem database were screened based on their ion mobility and the MS/MS matching score. This approach overcomes traditional challenges associated with the similarity of fragmentation patterns of DOM samples (e.g., common neutral losses of H2O, CO2, and CH2 -H2O) by narrowing down the isomeric candidate structures using the mobility domain.
机译:TIMS-FT-ICR MS是研究异构多样性和复合混合物元素组成的重要替代方案。虽然许多化合物的化学结构在溶解有机物质(DOM)中仍然很大程度上,但是使用化学式在分子水平上描述了高结构多样性。在这项研究中,通过对DOM的结构表征进行基于化学式的离子迁移率和串联MS分析,我们进一步推动TIMS-FT-ICR MS的边界。所描述的工作流能够使用宽带喷射后的单次喷射和基于持续的偏离谐振的单次喷射,在ICR电池中分离分子离子信号(ΔM/ z = 0.036)和分离分子离子信号(Delta m / z = 0.036)。辐照碰撞诱导的解离(Sori-CID)。将工作流程结果与标称质量(类似于1DA)的替代时的TIMS-Q-FT-ICR MS / MS实验进行比较。用异构和异巴酸混合物(例如,4-甲氧基-1-萘甲酸,2-甲氧基-1-萘甲酸,癸二酸)证明该技术,并施加到DOM的表征。通过分离分子离子[C18H18O10-H]的分离来说明这种新方法对DOM的分析进行说明 - 在标称质量为393的其他等异物存在下。将五个IMS带分配给异质离子迁移率[C18H18O10-H]( - ),并且基于其离子移动性和MS / MS匹配分数筛选来自Pubchem数据库的候选结构。这种方法通过使用迁移域缩小异构候选结构来克服与DOM样本(例如,H 2 O,CO 2和CH2-H2O)的碎片模式的相似性相关的传统挑战。

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