Institute of Analytical Chemistry, Leipzig University, Linnéstraße 3, 04103 Leipzig, Germany.
Institute of Electrical Engineering and Measurement Technology, Department of Sensors and Measurement Technology, Leibniz University Hannover, Appelstraße 9A, 30167 Hannover, Germany.
Anal Chem. 2020 Nov 17;92(22):15129-15136. doi: 10.1021/acs.analchem.0c03446. Epub 2020 Nov 3.
We report the first hyphenation of chip-electrochromatography (ChEC) with ion mobility spectrometry (IMS). This approach combines the separation power of two electrokinetically driven separation techniques, the first in liquid phase and the second in gas phase, with a label-free detection of the analytes. For achieving this, a microfluidic glass chip incorporating a monolithic separation column, a nanofluidic liquid junction for providing post-column electrical contact, and a monolithically integrated electrospray emitter was developed. This device was successfully coupled to a custom-built high-resolution drift tube IMS with shifted potentials. After proof-of-concept studies in which a mixture of five model compounds was analyzed in less than 80 s, this first ChEC-IMS system was applied to a more complex sample, the analysis of herbicides spiked in the wine matrix. The use of ChEC before IMS detection not only facilitated the peak allocation and increased the peak capacity but also enabled analyte quantification. As both, ChEC and IMS work at ambient conditions and are driven by high voltages, no bulky pumping systems are needed, neither for the hydrodynamic pumping of the mobile phase as in high-performance liquid chromatography nor for generating a vacuum system as in mass spectrometry. Accordingly, the approach has great potential as a portable analytical system for field analysis of complex mixtures.
我们首次实现了芯片电泳色谱(ChEC)与离子淌度谱(IMS)的联用。该方法结合了两种电动驱动分离技术的分离能力,第一种是液相分离,第二种是气相分离,并对分析物进行无标记检测。为此,我们开发了一种微流控玻璃芯片,其中包含一个整体式分离柱、一个用于提供柱后电接触的纳米流道液体结,以及一个整体式集成电喷雾发射器。该装置成功地与带有移位电势的定制高分辨率漂移管 IMS 进行了联用。在对五种模型化合物的混合物进行了概念验证研究,在不到 80 秒的时间内完成了分析之后,我们首次将 ChEC-IMS 系统应用于更复杂的样品,即对葡萄酒基质中添加的除草剂进行分析。在 IMS 检测之前使用 ChEC,不仅有助于峰分配和增加峰容量,而且还能够进行分析物定量。由于 ChEC 和 IMS 都在环境条件下工作,并由高压驱动,因此既不需要像高效液相色谱那样用于移动相的体积泵送系统,也不需要像质谱那样用于产生真空系统。因此,该方法作为一种用于现场分析复杂混合物的便携式分析系统具有很大的潜力。