Biological Sciences Division, Pacific Northwest National Laboratory, P.O. Box 999, Richland, Washington 99352, USA.
Mass Spectrom Rev. 2010 Mar-Apr;29(2):294-312. doi: 10.1002/mas.20232.
The electrodynamic ion funnel has enabled the manipulation and focusing of ions in a pressure regime (0.1-30 Torr) that has challenged traditional approaches, and provided the basis for much greater mass spectrometer ion transmission efficiencies. The initial ion funnel implementations aimed to efficiently capture ions in the expanding gas jet of an electrospray ionization interface and radially focus them for efficient transfer through a conductance limiting orifice. We review the improvements in fundamental understanding of ion motion in ion funnels, the evolution in its implementations that have brought the ion funnel to its current state of refinement, as well as applications of the ion funnel for purposes such as ion trapping, ion cooling, low pressure electrospray, and ion mobility spectrometry.
电动力学离子漏斗使人们能够在传统方法难以应对的压力范围内(0.1-30 托)对离子进行操纵和聚焦,并为质谱仪离子传输效率的大幅提高提供了基础。最初的离子漏斗设计旨在有效地捕获电喷雾电离接口膨胀气体射流中的离子,并将其径向聚焦,以通过电导限制孔进行高效传输。我们回顾了离子漏斗中离子运动基本原理的理解的改进,以及为使离子漏斗达到目前的精细化程度而进行的各种改进,以及离子漏斗在离子捕获、离子冷却、低压电喷雾和离子迁移谱等方面的应用。