Department of Chemistry, Indiana University , 800 E. Kirkwood Avenue, Bloomington, Indiana 47405, United States.
Anal Chem. 2013 Sep 17;85(18):8498-502. doi: 10.1021/ac402214g. Epub 2013 Aug 28.
Work presented here demonstrates application of nanopipettes pulled to orifice diameters of less than 100 nm as electrospray ionization emitters for mass spectrometry. Mass spectrometric analysis of a series of peptides and proteins electrosprayed from pulled-quartz capillary nanopipette emitters with internal diameters ranging from 37 to 70 nm is detailed. Overall, the use of nanopipette emitters causes a shift toward the production of ions of higher charge states and leads to a reduction in width of charge-state distribution as compared to typical nanospray conditions. Further, nanopipettes show improved S/N and the same signal precision as typical nanospray, despite the much smaller dimensions. As characterized by SEM images acquired before and after spray, nanopipettes are shown to be robust under conditions employed. Analytical calculations and numerical simulations are used to calculate the electric field at the emitter tip, which can be significant for the small diameter tips used.
本文展示了将拉制到孔径小于 100nm 的纳米管作为电喷雾电离发射器应用于质谱分析的过程。详细介绍了一系列从内径为 37 至 70nm 的石英毛细管纳米管发射器中电喷雾的肽和蛋白质的质谱分析。总的来说,与典型的纳喷雾条件相比,纳米管发射器的使用导致更高电荷态离子的生成,并且电荷态分布的宽度减小。此外,尽管纳米管的尺寸要小得多,但与典型的纳喷雾相比,纳米管显示出更好的信噪比和相同的信号精度。通过在喷雾前后获得的 SEM 图像进行表征,表明纳米管在使用的条件下具有很强的稳定性。分析计算和数值模拟用于计算发射器尖端的电场,这对于使用的小直径尖端非常重要。