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Selective light-triggered chemiluminescence between fluorescent dyes and luminol, and its analytical application

机译:荧光染料与鲁米诺之间的选择性光触发化学发光及其分析应用

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摘要

We report herein a novel chemiluminescence (CL) phenomenon triggered by light irradiation when a fluorescent dye, for example hematoporphyrin, fluorescein, eosin, or methylene blue is present in the luminol solution. A possible mechanism is proposed for the photoinduced chemiluminescence (PICL) reaction. Compared with reported methods for CL triggering, for example flow-injection, static reagent injection, and the electrochemical technique, the proposed insitu PICL method presented has three advantages. First, the method is more selective, because the PICL signal of the target fluorescent dyes is initiated by excitation at a selective wavelength only. Second, the space and time resolution of the PICL method are better. Last, and most important, compared with injecting a reagent or inserting a electrode into the CL system to initiate the CL reaction, with the in-situ PICL method there is no physical interference with the target detecting system. All these advantages of the PICL method indicate it has many potential applications in the analytical sciences. The proposed method was applied to analysis of urine containing adrenaline. The linear range for adrenaline is 2.0×10?10-1.0× 10?7 g mL?1 and the detection limit is 6.0×10?11 g mL?1.
机译:我们在这里报告了一种新的化学发光(CL)现象,当在鲁米诺溶液中存在一种荧光染料,例如血卟啉,荧光素,曙红或亚甲基蓝时,由光照射触发。提出了光诱导化学发光(PICL)反应的可能机制。与报道的CL触发方法(例如流动注射,静态试剂注入和电化学技术)相比,本文提出的原位PICL方法具有三个优点。首先,该方法更具选择性,因为目标荧光染料的PICL信号仅通过在选择波长下激发而启动。其次,PICL方法的时空分辨率更好。最后也是最重要的是,与将试剂注入电极或将电极插入CL系统以启动CL反应相比,采用原位PICL方法不会对目标检测系统造成物理干扰。 PICL方法的所有这些优点表明,它在分析科学中具有许多潜在的应用。该方法用于尿液中肾上腺素的分析。肾上腺素的线性范围为2.0×10→10-1.0×10→7 g mL·1,检测极限为6.0×10→11 g mL·1。

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