Zhang Cheng-Jie, Wu Xing-Zheng
Department of Materials Science and Engineering, School of Engineering, University of Fukui, Japan.
Anal Sci. 2007 Jun;23(6):743-6. doi: 10.2116/analsci.23.743.
On-capillary chemiluminescence detection for capillary electrophoresis with a single capillary was reported. A hole (about 30 microm diameter) was made on the capillary wall at about 50.5 cm from the inlet end. Hydrogen peroxide solution could enter the capillary from the hole, and mixed with luminol and copper(II) to produce chemiluminescence. The chemiluminescence was detected by a PMT under the hole. Several factors that influenced chemiluminescence intensity were investigated. The detection limits for luminol and N-(4-aminolbutyl)-N-ethylisoluminol (ABEI) were 1 x 10(-11) and 2 x 10(-10) mol L(-1), respectively. The method features simple construction and no dead volume.
报道了一种用于单毛细管毛细管电泳的柱上化学发光检测方法。在距进口端约50.5 cm处的毛细管管壁上打一个孔(直径约30微米)。过氧化氢溶液可从该孔进入毛细管,并与鲁米诺和铜(II)混合产生化学发光。在孔下方用光电倍增管检测化学发光。研究了影响化学发光强度的几个因素。鲁米诺和N-(4-氨丁基)-N-乙基异鲁米诺(ABEI)的检测限分别为1×10(-11)和2×10(-10) mol L(-1)。该方法具有结构简单、无死体积的特点。