Department of Chemistry, University of Texas at Arlington, Planetarium Place, Arlington, 76019, Texas.
Institute of Analytical Sciences, University of Lyon, 5 rue de la Doua, Villeurbanne, 69100, France.
Mass Spectrom Rev. 2016 Mar-Apr;35(2):201-18. doi: 10.1002/mas.21448. Epub 2015 Feb 3.
The negative-ion mode of electrospray ionization mass spectrometry (ESI-MS) is intrinsically less sensitive than the positive-ion mode. The detection and quantitation of anions can be performed in positive-ion mode by forming specific ion-pairs during the electrospray process. The paired-ion electrospray ionization (PIESI) method uses specially synthesized multifunctional cations to form positively charged adducts with the anions to be analyzed. The adducts are detected in the positive-ion mode and at higher m/z ratios to produce excellent signal-to-noise ratios and limits of detection that often are orders of magnitude better than those obtained with native anions in the negative-ion mode. This review briefly summarizes the different analytical approaches to detect and separate anions. It focuses on the recently introduced PIESI method to present the most effective dicationic, tricationic, and tetracationic reagents for the detection of singly and multiply charged anions and some zwitterions. The mechanism by which specific structural molecular architectures can have profound effects on signal intensities is also addressed.
电喷雾电离质谱(ESI-MS)的负离子模式比正离子模式本质上灵敏度更低。通过在电喷雾过程中形成特定的离子对,可以在正离子模式下对阴离子进行检测和定量。配对离子电喷雾电离(PIESI)方法使用专门合成的多功能阳离子与待分析的阴离子形成带正电荷的加合物。加合物在正离子模式下以更高的 m/z 比进行检测,从而产生优异的信噪比和检测限,其通常比负离子模式下天然阴离子获得的检测限高出几个数量级。本综述简要总结了不同的分析方法来检测和分离阴离子。它重点介绍了最近引入的 PIESI 方法,以展示用于检测单电荷和多电荷阴离子以及一些两性离子的最有效二价、三价和四价试剂。还讨论了特定结构分子架构如何对信号强度产生深远影响的机制。