Iavarone A T, Jurchen J C, Williams E R
Department of Chemistry, University of California, Berkeley 94720, USA.
J Am Soc Mass Spectrom. 2000 Nov;11(11):976-85. doi: 10.1016/S1044-0305(00)00169-0.
The effects of solvent composition on both the maximum charge states and charge state distributions of analyte ions formed by electrospray ionization were investigated using a quadrupole mass spectrometer. The charge state distributions of cytochrome c and myoglobin, formed from 47%/50%/3% water/solvent/acetic acid solutions, shift to lower charge (higher m/z) when the 50% solvent fraction is changed from water to methanol, to acetonitrile, to isopropanol. This is also the order of increasing gas-phase basicities of these solvents, although other physical properties of these solvents may also play a role. The effect is relatively small for these solvents, possibly due to their limited concentration inside the electrospray interface. In contrast, the addition of even small amounts of diethylamine (<0.4%) results in dramatic shifts to lower charge, presumably due to preferential proton transfer from the higher charge state ions to diethylamine. These results clearly show that the maximum charge states and charge state distributions of ions formed by electrospray ionization are influenced by solvents that are more volatile than water. Addition of even small amounts of two solvents that are less volatile than water, ethylene glycol and 2-methoxyethanol, also results in preferential deprotonation of higher charge state ions of small peptides, but these solvents actually produce an enhancement in the higher charge state ions for both cytochrome c and myoglobin. For instruments that have capabilities that improve with lower m/z, this effect could be taken advantage of to improve the performance of an analysis.
使用四极杆质谱仪研究了溶剂组成对电喷雾电离形成的分析物离子的最大电荷态和电荷态分布的影响。由47%/50%/3%的水/溶剂/乙酸溶液形成的细胞色素c和肌红蛋白的电荷态分布,当50%的溶剂部分从水变为甲醇、乙腈、异丙醇时,会向较低电荷(较高m/z)转移。这也是这些溶剂气相碱性增加的顺序,尽管这些溶剂的其他物理性质也可能起作用。对于这些溶剂,这种影响相对较小,可能是由于它们在电喷雾接口内的浓度有限。相比之下,即使添加少量二乙胺(<0.4%)也会导致电荷显著向较低电荷转移,这可能是由于较高电荷态离子向二乙胺的优先质子转移。这些结果清楚地表明,电喷雾电离形成的离子的最大电荷态和电荷态分布受比水更易挥发的溶剂影响。即使添加少量比水更不易挥发的两种溶剂,乙二醇和2-甲氧基乙醇,也会导致小肽较高电荷态离子的优先去质子化,但这些溶剂实际上会使细胞色素c和肌红蛋白的较高电荷态离子增加。对于那些m/z较低时性能会提高的仪器,可以利用这种效应来提高分析性能。