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Cold-Spray Ionization Mass Spectrometry: Applications in Structural Coordination Chemistry

机译:冷喷雾电离质谱:在结构配位化学中的应用

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摘要

Electrospray ionization (ESI)-mass spectrometry (MS) is generally used for the characterization of labile supramolecules in which non-covalent bonding interactions are predominant. However, molecular ions are not detected in many cases because of their instability, and even if such ions are detected, thermal decomposition generates fragment ions that also appear in the mass spectrum. Cold-spray ionization (CSI) is designed for the MS detection of labile organic species. It is used to analyze the structures of biomolecular complexes and labile organic species in solution. The method, a variant of ESI-MS, operates at low temperature, allowing simple and precise characterization of labile non-covalent complexes that are difficult or impossible to observe by conventional MS techniques. The CSI method is particularly suitable for elucidating the structures of labile organometallic compounds in solution as it offers a means to investigate the dynamic behavior of unstable molecules and/or labile clusters in solution. Various labile organic compounds are analyzed by using the CSI method in the field of organic chemistry. CSI-MS is also used to investigate the behavior of aggregated steroid compounds, namely, bisguanidinobenzene–benzoic acid complexes, in solution. This method is a powerful tool for analyzing the equilibria of multiply linked self-assembling catenanes in solution. Its application to unstable and complex supramolecules will be shown. We have developed an effective ionization method that uses metal-complex-based ionization probes containing 2,6-bis(oxazolinyl) pyridine (pybox) ligands. Using this method, we were able to detect multiply charged ions of target molecules. This method was proven to effectively ionize large complex molecules, including biomolecules and various supramolecules, as well as carbon clusters, such as fullerenes. Moreover, isotope-labeled pybox-La complexes were used to clearly detect isotopic labeling shifts. Their applications to multiply charged ionization, including isotope labeling of biomolecules and carbon clusters using CSI-MS, will be shown.
机译:电喷雾电离(ESI)-质谱(MS)通常用于表征不稳定的超分子,其中非共价键相互作用占主导。然而,由于分子离子的不稳定性,在很多情况下都无法检测到,即使检测到这种离子,热分解也会产生碎片离子,该碎片离子也会出现在质谱图中。冷喷雾电离(CSI)设计用于MS检测不稳定有机物。它用于分析溶液中生物分子复合物和不稳定有机物的结构。该方法是ESI-MS的一种变体,可在低温下运行,可对不稳定的非共价复合物进行简单而精确的表征,而传统的MS技术很难或不可能观察到这些不稳定的非共价复合物。 CSI方法特别适用于阐明溶液中不稳定的有机金属化合物的结构,因为它提供了一种方法来研究溶液中不稳定分子和/或不稳定簇的动力学行为。在有机化学领域中,使用CSI方法分析了各种不稳定的有机化合物。 CSI-MS还用于研究溶液中聚集的类固醇化合物(即双胍基苯-苯甲酸复合物)的行为。该方法是分析溶液中多重连接的自组装链烯平衡的有力工具。将显示其在不稳定和复杂的超分子中的应用。我们已经开发了一种有效的电离方法,该方法使用包含2,6-双(恶唑啉基)吡啶(pybox)配体的基于金属配合物的电离探针。使用这种方法,我们能够检测目标分子的多重带电离子。事实证明,该方法可以有效地电离大型复杂分子,包括生物分子和各种超分子以及碳簇(例如富勒烯)。此外,同位素标记的pybox-La复合物用于清楚地检测同位素标记的变化。将展示它们在多重带电电离中的应用,包括使用CSI-MS对生物分子和碳簇进行同位素标记。

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