McLuckey Scott A
Department of Chemistry, Purdue University, West Lafayette, IN 47907-2084, USA.
Eur J Mass Spectrom (Chichester). 2010;16(3):429-36. doi: 10.1255/ejms.1031.
The advent of ionization methods that can produce multiply charged gaseous ions has enabled the development of gas-phase ion/ion reactions in analytical mass spectrometry. Ion/ion chemistry has proved to be a particularly effective means for converting ions from one type to another and allows for a decoupling of the ionization method from the nature of the ion subjected to tandem mass spectrometry. A growing array of applications has been developed based on a variety of reaction types, including electron transfer, proton transfer, charge inversion, metal transfer, etc. Most ion/ion reactions take place following the formation of a stable bound orbit between the reactants. As reactants approach closely enough for chemistry to occur, they can react by small charged particle transfer (i.e. electron transfer and proton transfer) at crossing points in the interaction potential. Alternatively, the reactants can collide to form a relatively long-lived complex. A wide range of chemical reactions can result from the long-lived complex, which include multiple charged particle transfers and covalent bond formation. For a given analyte ion, the major reaction pathway is determined by the characteristics of the reagent ion. An appreciation of the factors that underlie the partitioning of ion/ion reaction products is important in the design and selection of reagent ions to effect transformations of interest. Important considerations for reagent ion selection are discussed here within the context of a generalized scheme for ion/ion reaction dynamics.
能够产生多电荷气态离子的电离方法的出现,推动了分析质谱中气相离子/离子反应的发展。离子/离子化学已被证明是将离子从一种类型转化为另一种类型的特别有效的手段,并且使得电离方法与串联质谱中所研究离子的性质得以解耦。基于包括电子转移、质子转移、电荷反转、金属转移等多种反应类型,已经开发出越来越多的应用。大多数离子/离子反应是在反应物之间形成稳定的束缚轨道之后发生的。当反应物足够接近以发生化学反应时,它们可以在相互作用势的交叉点通过小带电粒子转移(即电子转移和质子转移)进行反应。或者,反应物可以碰撞形成相对长寿命的复合物。长寿命复合物可引发多种化学反应,包括多带电粒子转移和共价键形成。对于给定的分析物离子,主要反应途径由试剂离子的特性决定。了解离子/离子反应产物分配背后的因素,对于设计和选择用于实现感兴趣转化的试剂离子非常重要。本文在离子/离子反应动力学的通用方案背景下讨论了试剂离子选择的重要考虑因素。