Instituto de Química, Universidade Federal de Goiás, Goiânia, Brazil.
Electrophoresis. 2012 Sep;33(17):2660-7. doi: 10.1002/elps.201200009.
This paper reports the fabrication of polyester-toner (PT) electrophoresis microchips with improved analytical performance and extended lifetime. This has been achieved with a better understanding about the EOF generation and the influence of some parameters including the channel dimensions (width and depth), the injection mode, and the addition of organic solvent to the running buffer. The analytical performance of the PT devices was investigated using a capacitively coupled contactless conductivity detector and inorganic cations as model analytes. The proposed devices have exhibited EOF values of (3.4 ± 0.2) × 10(-4) cm(2) V(-1) s(-1) with good stability over 25 consecutive runs. It has been found that the EOF magnitude depends on the channel dimension, i.e. the wider the channel, the higher the EOF value. The separation efficiency for inorganic cations ranged from 13 000 to 50 000 plates/m. The LOD found for K(+) , Na(+) , and Li(+) were 4.2, 7.3, and 23 μM, respectively. In addition, the same PT device has been used by three consecutive days. Lately, due to improved analytical performance, it was carried out by the first time the detection of inorganic cations in real samples such as energetic drinks and pharmaceutical formulations.
本文报道了一种具有改进的分析性能和延长的使用寿命的聚酯色粉(PT)电泳微芯片的制造。这是通过更好地了解电渗流(EOF)的产生以及一些参数的影响来实现的,这些参数包括通道尺寸(宽度和深度)、注入模式以及向运行缓冲液中添加有机溶剂。使用电容耦合非接触式电导检测器和无机阳离子作为模型分析物来研究 PT 器件的分析性能。所提出的器件表现出(3.4 ± 0.2)×10(-4) cm(2) V(-1) s(-1) 的 EOF 值,在 25 次连续运行中具有良好的稳定性。已经发现 EOF 大小取决于通道尺寸,即通道越宽,EOF 值越高。无机阳离子的分离效率范围从 13000 到 50000 板/m。对于 K(+)、Na(+)和 Li(+),检测限分别为 4.2、7.3 和 23 μM。此外,同一 PT 装置已连续使用三天。最近,由于分析性能的提高,首次在实际样品(如能量饮料和药物制剂)中检测到了无机阳离子。