Department of Chemistry, University of California, Berkeley, California 94720-1460, United States.
J Am Soc Mass Spectrom. 2023 Jun 7;34(6):1186-1195. doi: 10.1021/jasms.3c00121. Epub 2023 May 30.
Effects of electrospray voltage on cluster size and abundance formed from aqueous CsI were investigated with emitter tip diameters between 260 ± 7 nm and 2.45 ± 0.30 μm. Cluster size increases with increasing voltage, increasing solution concentration and increasing emitter diameter consistent with formation of larger initial droplet sizes. For emitters with tip diameters above ∼1 μm, varying the voltage either up or down leads to reproducible voltage-dependent extents of cluster formation. In contrast, higher voltages with submicron diameter emitters can lead to only Cs and Cs(HO) and no clusters. This change in ion formation reproducibly occurs at spray potentials >1.3 kV for 260 nm emitters and appears to be induced by a corona discharge and material build-up at the emitter tip. Under conditions where abundant Cs is observed and no clusters are formed, ions such as K and Cu are also observed but ions with more negative solvation energies, such as Ba, are not. Similarly, ions from bradykinin and ubiquitin are observed predischarge but not post discharge. Ions with more positive solvation energies can desorb directly from the air-water interface that is created at the tip of these emitters, whereas ions with more negative solvation energies as well as peptide and protein ions do not. These results indicate that ion desorption directly from solution can occur, and similar experiments with even smaller emitters may lead to new insights into ion formation in electrospray ionization.
采用尖端直径为 260±7nm 和 2.45±0.30μm 的喷嘴,研究了水相 CsI 形成的簇大小和丰度随电喷雾电压的变化。簇尺寸随电压、溶液浓度和喷嘴直径的增加而增大,这与初始液滴尺寸增大的形成一致。对于尖端直径大于约 1μm 的喷嘴,无论是增加还是降低电压,都会导致可重复的、与电压相关的簇形成程度。相比之下,在亚微米直径的喷嘴上使用更高的电压只会导致 Cs 和 Cs(HO),而没有簇。这种离子形成的变化在喷雾电位>1.3kV 时在 260nm 喷嘴上可重复发生,似乎是由电晕放电和在喷嘴尖端的材料堆积引起的。在观察到大量 Cs 且未形成簇的条件下,也观察到 K 和 Cu 等离子,但没有观察到具有更负溶剂化能的离子,如 Ba。同样,在预放电时可以观察到缓激肽和泛素的离子,但在放电后则观察不到。具有更高溶剂化能的离子可以直接从这些喷嘴尖端形成的气-水界面解吸,而具有更负溶剂化能以及肽和蛋白质离子则不能。这些结果表明,离子可以直接从溶液中解吸,而使用更小的喷嘴进行类似的实验可能会对电喷雾电离中的离子形成有新的认识。