Shaffer S A, Prior D C, Anderson G A, Udseth H R, Smith R D
Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, 99352, USA.
Anal Chem. 1998 Oct 1;70(19):4111-9. doi: 10.1021/ac9802170.
To improve upon the already impressive sensitivity achievable with electrospray ionization sources, a novel electrohydrodynamic ion funnel interface has been developed and implemented with a triple-quadrupole mass spectrometer. The ion funnel interface effectively consists of a series of ring electrodes of increasingly small internal diameters to which rf and dc electric potentials are coapplied. In the 1-10-Torr pressure range, the electric fields cause the collisionally damped ions to be more effectively focused and transmitted as a collimated ion beam. This paper describes the ion funnel design and presents an evaluation of its performance using a triple-quadrupole mass spectrometer. Ion transmission and m/z discriminating parameters (resulting in both effective low- and high-m/z cutoffs) are presented based upon both ion current measurements and mass spectra. Electrospray ionization mass spectra of selected protein solutions demonstrated well over 1 order of magnitude increase in signal relative to that of the instrument operated in its standard (inlet capillary-skimmer) configuration under similar conditions. The present results suggest that it will be feasible to realize close to 100% ion transmission efficiency for analytically relevant ions through the electrospray ionization interface and into the mass analyzer.
为了进一步提高电喷雾电离源已有的令人印象深刻的灵敏度,已开发出一种新型的电液动力离子漏斗接口,并将其应用于三重四极杆质谱仪。离子漏斗接口实际上由一系列内径越来越小的环形电极组成,同时施加射频和直流电势。在1至10托的压力范围内,电场使碰撞阻尼离子更有效地聚焦并作为准直离子束传输。本文描述了离子漏斗的设计,并给出了使用三重四极杆质谱仪对其性能的评估。基于离子电流测量和质谱给出了离子传输和质荷比区分参数(产生有效的低质荷比和高质荷比截止值)。所选蛋白质溶液的电喷雾电离质谱表明,在相似条件下,相对于以其标准(入口毛细管-分离器)配置运行的仪器,信号增加了超过1个数量级。目前的结果表明,通过电喷雾电离接口并进入质量分析器,实现接近100%的分析相关离子的离子传输效率将是可行