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Negative Electrospray Ionization via Deprotonation: Predicting the Ionization Efficiency

机译:通过去质子化的负电喷雾电离:预测电离效率

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Electrospray ionization (ESI) in the negative ion mode has received less attention in fundamental studies than the positive ion electrospray ionization. In this paper, we study the efficiency of negative ion formation in the ESI source via deprotonation of substituted phenols and benzoic acids and explore correlations of the obtained ionization efficiency values (logIE) with different molecular properties. It is observed that stronger acids (i.e., fully deprotonated in the droplets) yielding anions with highly delocalized charge [quantified by the weighted average positive sigma (WAPS) parameter rooted in the COSMO theory] have higher ionization efficiency and give higher signals in the negative-ion ESI/MS. A linear model was obtained, which equally well describes the logIE of both phenols and benzoic acids (R~2 = 0.83, S = 0.40 log units) and contains only an ionization degree in solution (α) and WAPS as molecular parameters. Both parameters can easily be calculated with the COSMO-RS method. The model was successfully validated using a test set of acids belonging neither to phenols nor to benzoic acids, thereby demonstrating its broad applicability and the universality of the above-described relationships between IE and molecular properties.
机译:与正离子电喷雾电离相比,负离子模式下的电喷雾电离(ESI)在基础研究中受到的关注较少。在本文中,我们研究了通过取代酚和苯甲酸去质子化在ESI源中形成负离子的效率,并探讨了获得的电离效率值(logIE)与不同分子特性的相关性。可以观察到,较强的酸(即在液滴中完全去质子化)产生的阴离子具有高度离域的电荷(由COSMO理论确定的加权平均正西格玛(WAPS)参数量化)具有较高的电离效率,并且在负离子中给出较高的信号离子ESI / MS。得到的线性模型同样很好地描述了酚和苯甲酸的logIE(R〜2 = 0.83,S = 0.40 log单位),并且仅包含溶液(α)中的电离度和WAPS作为分子参数。可以使用COSMO-RS方法轻松计算两个参数。使用既不属于苯酚也不属于苯甲酸的酸的测试集成功验证了该模型,从而证明了其广泛的适用性以及上述IE和分子性质之间关系的普遍性。

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