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Influence of the capillary temperature and the source pressure on the internal energy distribution of electrosprayed ions

机译:毛细管温度和离子源压力对电喷雾离子内部能量分布的影响

摘要

The internal energy distributions in a heated capillary nano-electrospray source have been determined using the "survival yield" method. At low capillary temperatures, the internal energy distribution is characterized by a low-energy tail, which can be attributed to a fraction of ions not fully desolvated in the heated capillary. This low-energy tais is shown to disappear when the source pressure is increased. This explains why increased source pressure is favorable in the case of highly hydrophilic compounds or non-covalent complexes in order to achieve sufficient desolvation without fragmentation. It is also shown that "high temperature-low voltage" are not equivalent to "low temperature-high voltage" source conditions. These observations are important for fundamental issues as well as for source-CID mass spectral library searching applications.
机译:已使用“存活率”方法确定了加热的毛细管纳米电喷雾源中的内部能量分布。在较低的毛细管温度下,内部能量分布的特征是低能量的尾巴,这可以归因于一部分离子在加热的毛细管中没有完全脱溶剂。当增加源压力时,这种低能量的tais消失了。这解释了为什么在高度亲水的化合物或非共价配合物的情况下增加源压力是有利的,以实现足够的去溶剂化而不会碎裂。还显示出“高温-低压”不等同于“低温-高压”源条件。这些观察对于基本问题以及源CID质谱库搜索应用程序都非常重要。

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