Yu Hong-Xiao, Cui Hua, Guo Ji-Zhao
Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.
Luminescence. 2004 Jul-Aug;19(4):212-21. doi: 10.1002/bio.778.
Multi-channel electrochemiluminescence (ECL) of luminol at a copper electrode has been studied under conventional cyclic voltammetric (CV) conditions. Compared with the ECL of luminol at other electrodes, three ECL peaks were observed at 0.30, -0.24 and -0.65 V (vs. SCE), respectively, which was also imaged by a CCD camera. The effects of potential scan direction, anodic reverse potential, the presence of N2 and O2 of the solution, the pH of the solution, the NaNO3 concentration and the potential scan rate were examined. The effect of n-alkanethiol self-assembled monolayers on copper electrodes and 20 L-amino acids, dopamine, adrenaline and noradrenaline on the ECL of luminol were also investigated. The emission spectra of various ECL peaks at different potentials demonstrated that all ECL peaks were related to the luminol reaction. The results show that the oxygen dissolved in solution and copper oxide covered on the surface of the electrode play an important role in the luminol ECL process at a copper electrode. It has been proposed that three ECL channels of luminol at a copper electrode resulted from the reactions of luminol or luminol radical electrooxidized by luminol with various electrogenerated oxygen-containing species, such as O2, OOH- and copper oxides at different potentials.
在传统循环伏安(CV)条件下,研究了鲁米诺在铜电极上的多通道电化学发光(ECL)。与鲁米诺在其他电极上的ECL相比,分别在0.30、-0.24和-0.65 V(相对于饱和甘汞电极,SCE)处观察到三个ECL峰,这些峰也通过电荷耦合器件(CCD)相机成像。研究了电位扫描方向、阳极反向电位、溶液中N2和O2的存在、溶液pH值、NaNO3浓度以及电位扫描速率的影响。还研究了正烷硫醇自组装单分子层对铜电极的影响以及20种L-氨基酸、多巴胺、肾上腺素和去甲肾上腺素对鲁米诺ECL的影响。不同电位下各种ECL峰的发射光谱表明,所有ECL峰均与鲁米诺反应有关。结果表明,溶解在溶液中的氧和覆盖在电极表面的氧化铜在铜电极上的鲁米诺ECL过程中起重要作用。有人提出,铜电极上鲁米诺的三个ECL通道是由鲁米诺或被鲁米诺电氧化的鲁米诺自由基与不同电位下各种电生成的含氧物种(如O2、OOH-和氧化铜)反应产生的。