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物理化学性质与毛细管振动锐边喷雾电离(cVSSI)中的离子化效率的关系。

Physicochemical Property Correlations with Ionization Efficiency in Capillary Vibrating Sharp-Edge Spray Ionization (cVSSI).

机构信息

C. Eugene Bennett Department of Chemistry, West Virginia University, 217 Clark Hall, Morgantown, West Virginia 26506, United States.

出版信息

J Am Soc Mass Spectrom. 2021 Jan 6;32(1):84-94. doi: 10.1021/jasms.0c00100. Epub 2020 Aug 28.

Abstract

The relative contributions to ionization efficiency by three molecular chemical properties have been examined for field-free and field-enabled capillary vibrating sharp-edge spray ionization (cVSSI) using mass spectrometry (MS) analysis. Ion intensities have been recorded for model compounds under each operational ionization mode as well as for aqueous and nonaqueous (methanol) solvent systems. Multiple regression analysis suggests that for field-free cVSSI, ion intensity is mostly associated with the log of the base dissociation constant (p) and proton affinity (PA) for both aqueous and methanol solutions. Comparatively, for field-enabled cVSSI using aqueous solutions, the dominant factor correlated with ion intensity is the log of the partition coefficient (log ). To a lesser degree, this is observed for methanol solutions as well. For ESI, p is the dominant factor associated with ion signal levels from methanol and aqueous solutions. These results are supported by studies conducted on two different mass spectrometers employing different cVSSI emitter tips. The relationship of ion intensity and p in ESI is supported by multiple studies; however, the shift to other chemical properties with the addition of cVSSI suggests the possibility that a different (or combinations of) ionization mechanism(s) may be operative for these ionization modes. These results are briefly considered in light of the different ESI mechanisms.

摘要

采用质谱(MS)分析,研究了三种分子化学性质对无场和场增强毛细管振动锐边喷雾电离(cVSSI)的电离效率的相对贡献。记录了模型化合物在每种操作电离模式下以及在水相和非水相(甲醇)溶剂体系下的离子强度。多元回归分析表明,对于无场 cVSSI,离子强度主要与水相和甲醇溶液的基离解常数(p)和质子亲和力(PA)的对数相关。相比之下,对于使用水相的场增强 cVSSI,与离子强度相关的主要因素是分配系数(log )的对数。对于甲醇溶液,也观察到了较小程度的这种情况。对于 ESI,p 是与甲醇和水溶液的离子信号水平相关的主要因素。这些结果得到了在两台采用不同 cVSSI 发射器尖端的不同质谱仪上进行的研究的支持。离子强度和 p 在 ESI 中的关系得到了多项研究的支持;然而,随着 cVSSI 的加入,其他化学性质的转变表明,对于这些电离模式,可能存在不同的(或组合的)电离机制。这些结果在考虑不同的 ESI 机制时被简要考虑。

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