Department of Chemistry, East China Normal University, Shanghai, People's Republic of China.
Luminescence. 2012 Nov-Dec;27(6):482-8. doi: 10.1002/bio.1379. Epub 2011 Dec 27.
A simple and effective capillary electrophoresis-chemiluminescence (CE-CL) detection system was developed based on an ultra-fast bis(2,4,6-trichlorophenyl)oxalate (TCPO) chemiluminescence (CL) reaction (0.6 s duration) that avoided overlapping peaks and peak tailing. Through a series of static injection experiments, this unusually rapid CL reaction was ascribed to the catalytic effect of imidazole in the tetrahydrofuran solvent, which has been rarely utilized in such investigations. A possible mechanism is given to explain the results. Under the optimized conditions, rhodamine 6 G (R6G) and its hydrolysis product (R6G-COOH) could be efficiently separated through electrophoresis in 7 min, with sensitive CL detection in the proposed CE-CL system. In this way, the alkaline hydrolysis of R6G was monitored, followed by estimation of relative rate constants and activation energy. This finding and application should be helpful in further study for the TCPO CL reaction, and revealed an attractive opportunity for simplifying the CE-CL system, such as in a microchip device.
建立了一种简单有效的毛细管电泳-化学发光(CE-CL)检测系统,该系统基于超快双(2,4,6-三氯苯基)草酸酯(TCPO)化学发光(CL)反应(0.6 s 持续时间),避免了峰重叠和峰拖尾。通过一系列静态注射实验,将这种异常快速的 CL 反应归因于四氢呋喃溶剂中咪唑的催化作用,而在这种研究中很少利用这种作用。给出了一种可能的机制来解释结果。在优化条件下,通过电泳可在 7 分钟内有效分离罗丹明 6G(R6G)及其水解产物(R6G-COOH),并在提出的 CE-CL 系统中进行灵敏的 CL 检测。通过这种方式,监测了 R6G 的碱性水解,并估计了相对速率常数和活化能。这一发现和应用应该有助于进一步研究 TCPO CL 反应,并为简化 CE-CL 系统(如微芯片设备)提供了有吸引力的机会。