Instituto de Química, Universidade de São Paulo, São Paulo, SP, Brazil.
Electrophoresis. 2011 Apr;32(8):939-46. doi: 10.1002/elps.201000479. Epub 2011 Mar 11.
This paper describes the automation of a fully electrochemical system for preconcentration, cleanup, separation and detection, comprising the hyphenation of a thin layer electrochemical flow cell with CE coupled with contactless conductivity detection (CE-C⁴D). Traces of heavy metal ions were extracted from the pulsed-flowing sample and accumulated on a glassy carbon working electrode by electroreduction for some minutes. Anodic stripping of the accumulated metals was synchronized with hydrodynamic injection into the capillary. The effect of the angle of the slant polished tip of the CE capillary and its orientation against the working electrode in the electrochemical preconcentration (EPC) flow cell and of the accumulation time were studied, aiming at maximum CE-C⁴D signal enhancement. After 6 min of EPC, enhancement factors close to 50 times were obtained for thallium, lead, cadmium and copper ions, and about 16 for zinc ions. Limits of detection below 25 nmol/L were estimated for all target analytes but zinc. A second separation dimension was added to the CE separation capabilities by staircase scanning of the potentiostatic deposition and/or stripping potentials of metal ions, as implemented with the EPC-CE-C⁴D flow system. A matrix exchange between the deposition and stripping steps, highly valuable for sample cleanup, can be straightforwardly programmed with the multi-pumping flow management system. The automated simultaneous determination of the traces of five accumulable heavy metals together with four non-accumulated alkaline and alkaline earth metals in a single run was demonstrated, to highlight the potentiality of the system.
本文描述了一种完全电化学系统的自动化,该系统用于预浓缩、净化、分离和检测,包括将薄层电化学流动池与 CE 耦合,并结合非接触式电导检测(CE-C⁴D)。痕量重金属离子从脉冲流动样品中被提取出来,并通过电还原在玻碳工作电极上积累几分钟。在电喷雾进样过程中,同步进行累积金属的阳极溶出。研究了 CE 毛细管倾斜抛光尖端的角度及其在电化学预浓缩(EPC)流动池中的工作电极的方向以及积累时间对 CE-C⁴D 信号增强的影响,旨在获得最大的 CE-C⁴D 信号增强。经过 6 分钟的 EPC,铊、铅、镉和铜离子的增强因子接近 50 倍,锌离子的增强因子约为 16。除锌离子外,所有目标分析物的检测限均低于 25 nmol/L。通过 staircase 扫描金属离子的恒电位沉积和/或溶出电位,向 CE 分离能力添加了第二个分离维度,这是通过 EPC-CE-C⁴D 流动系统实现的。沉积和溶出步骤之间的基质交换对于样品净化非常有价值,可以通过多泵流管理系统直接编程。在单次运行中,自动化同时测定五种可积累重金属以及四种非积累的碱土金属的痕量,以突出该系统的潜力。