Department of Chemistry, National Taiwan University, Taipei, Taiwan.
Department of Chemistry, National Taiwan University, Taipei, Taiwan.
J Chromatogr A. 2015 Jan 30;1379:106-11. doi: 10.1016/j.chroma.2014.12.046. Epub 2014 Dec 25.
To alleviate signal suppression resulting from nonvolatile positive ion additives, a hydrodynamic flow assisted double junction capillary electrophoresis-mass spectrometry (CE-MS) interface was proposed. The double junction interface which could alleviate the ion suppression due to nonvolatile negative ion additives was modified so that a hydrodynamic flow could be introduced to the interface. Using this setup, the apparent velocity of the ions was determined based on its electrophoretic mobility, electroosmotic flow in the transfer capillary, and hydrodynamic flow introduced by the syringe pump. CE-MS analysis of positively charged triazines was performed to demonstrate the practical value of this approach by using cetyltrimethylammonium ion (CTA(+)) as an additive. Because the separation column was dynamically coated with CTA(+), the EOF was reversed and the separation was performed under counter EOF mode. Under an appropriate hydrodynamic flow, the analytes (triazines) could be propagated toward the MS, whereas the additive (CTA(+)) ion was retained in the interface. Consequently, the problem of signal suppression by CTA(+) was alleviated, and the signals were enhanced more than 20-fold.
为了缓解非挥发性正离子添加剂引起的信号抑制,提出了一种流体动力学流动辅助双结毛细管电泳-质谱(CE-MS)接口。对可以缓解由于非挥发性负离子添加剂引起的离子抑制的双结接口进行了改进,以便可以将流体动力学流动引入接口。使用此设置,可以根据其电泳迁移率、转移毛细管中的电渗流以及通过注射器泵引入的流体动力学流动来确定离子的表观速度。通过使用十六烷基三甲基铵离子(CTA(+))作为添加剂,对带正电荷的三嗪进行了 CE-MS 分析,以证明该方法的实际价值。由于分离柱动态涂覆有 CTA(+),因此EOF 反转,并且在反EOF 模式下进行分离。在适当的流体动力学流动下,分析物(三嗪)可以向 MS 传播,而添加剂(CTA(+))离子则保留在接口中。因此,缓解了 CTA(+)引起的信号抑制问题,并且信号增强了 20 多倍。