Charles University in Prague, Faculty of Science, Department of Analytical Chemistry, Prague, Czech Republic.
J Sep Sci. 2011 Nov;34(22):3131-5. doi: 10.1002/jssc.201100561. Epub 2011 Oct 12.
In this work, we describe the introduction of a post-column solid-state reactor in the HPLC system used for the analyses of amino acids. The reactor used was filled with copper(II) oxide. Passage of the analytes through the reactor leads to the formation of Cu(II) complexes. Unlike free amino acids, the Cu-complexes show significant absorbance in the UV region and accordingly sensitivity of UV-VIS detection is increased by two to three orders of magnitude. As a result of this improvement in sensitivity, we have obtained LOD values in micromolar range and good linearity over the studied concentration range (5.0×10(-5) to 2.0×10(-3) mol/L). The method exhibits advantages typical of solid-state reactors, such as negligible loss of efficiency due to the derivatization, simplicity of realization and a long-term durability. The presented system brings an easy and versatile solution for UV-VIS detection of coordinating compounds, which do not normally absorb well in the UV-VIS region.
在这项工作中,我们描述了在用于氨基酸分析的 HPLC 系统中引入柱后固态反应器。所使用的反应器填充了氧化铜。分析物通过反应器时会形成 Cu(II) 配合物。与游离氨基酸不同,Cu 配合物在紫外区域显示出明显的吸光度,因此 UV-VIS 检测的灵敏度提高了两到三个数量级。由于这种灵敏度的提高,我们在研究的浓度范围内(5.0×10(-5) 至 2.0×10(-3) mol/L)获得了微摩尔级别的检出限和良好的线性。该方法具有固态反应器的典型优点,例如由于衍生化而导致的效率损失可以忽略不计、实现简单且长期耐用。所提出的系统为配位化合物的 UV-VIS 检测提供了一种简单而通用的解决方案,这些配位化合物在 UV-VIS 区域通常吸收不好。