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鲁米诺在碱性溶液中于石蜡浸渍石墨电极上的电化学发光。

Electrochemiluminescence of luminol in alkaline solution at a paraffin-impregnated graphite electrode.

作者信息

Cui Hua, Zou Gui Zheng, Lin Xiang-Qin

机构信息

Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.

出版信息

Anal Chem. 2003 Jan 15;75(2):324-31. doi: 10.1021/ac0201631.

Abstract

The behavior of luminol electrochemiluminescence (ECL) at a paraffin-impregnated graphite electrode (PIGE) at different applied potentials was studied. Five ECL peaks were observed at 0.31, 0.59, 1.09, 1.54, and -0.58 V versus SCE, respectively, being related to potential scan direction and ranges, N2, O2, pH of the solution, and KCl concentration. The emission spectra of various ECL peaks at different potentials showed that all ECL peaks were initiated by luminol reactions. X-ray diffraction demonstrated that a simple mixture was formed between graphite and paraffin. The fluorescence spectra on the surface of the PIGE suggested that certain groups on the graphite were oxidized when the positive potential was applied to the electrode. In the presence of O2, three main ECL peaks were obtained in 0.1 mol/L KCl at pH 12.2. The ECL peak at 0.59 V with a shoulder is likely due to the reaction of luminol radicals with O2 and further electrooxidation of luminol radicals. The ECL peak at 1.54 V was suggested to be due to the electrooxidation of OH- to HO2- at higher potential and then to O2-, which reacted with luminol to produce light emission. Moreover, the oxygen-containing functional groups formed by the oxidation of the surface of the graphite electrode might enhance the ECL. At -0.58 V, the dissolved oxygen in solution was reduced to HO2-, resulting in light emission. At a potential higher than 1.64 V, ClO- was formed, leading to a broad emission wave and enhancement of the ECL peak at -0.58 V upon the reversal scan. Under nitrogen atmosphere, an ECL peak appeared at 1.09 V. At this potential, OH- was oxidized to O2, followed by the reaction with luminol to generate light emission. At pH 13.2 or 0.5 mol/L KCl, the shoulder of the ECL peak at 0.59 V became an ECL peak at 0.31 V. The conversion of luminol radicals into excited 3-aminophthalate may undergo two routes. Under these conditions, two routes might proceed at a different rate to form another ECL peak. It is concluded that luminol ECL could be readily excited by various oxygen-containing species electrogenerated at different applied potentials. Three strong ECL peaks obtained at different potentials on the PIGE might be of a potential to improve analytical selectivity and sensitivity for the detection of some analytes.

摘要

研究了鲁米诺在不同施加电位下于石蜡浸渍石墨电极(PIGE)上的电化学发光(ECL)行为。相对于饱和甘汞电极(SCE),分别在0.31、0.59、1.09、1.54和 -0.58 V处观察到五个ECL峰,这与电位扫描方向和范围、N₂、O₂、溶液的pH值以及KCl浓度有关。不同电位下各种ECL峰的发射光谱表明,所有ECL峰均由鲁米诺反应引发。X射线衍射表明石墨和石蜡之间形成了简单混合物。PIGE表面的荧光光谱表明,当向电极施加正电位时,石墨上的某些基团被氧化。在O₂存在下,在pH 12.2的0.1 mol/L KCl中获得了三个主要的ECL峰。0.59 V处带有肩峰的ECL峰可能是由于鲁米诺自由基与O₂反应以及鲁米诺自由基的进一步电氧化所致。1.54 V处的ECL峰被认为是由于在较高电位下OH⁻被电氧化为HO₂⁻,然后再氧化为O₂⁻,其与鲁米诺反应产生发光。此外,石墨电极表面氧化形成的含氧官能团可能会增强ECL。在 -0.58 V时,溶液中的溶解氧被还原为HO₂⁻,从而产生发光。在高于1.64 V的电位下,形成了ClO⁻,导致出现宽发射波,并在反向扫描时增强了 -0.58 V处的ECL峰。在氮气气氛下,在1.09 V处出现一个ECL峰。在此电位下,OH⁻被氧化为O₂,随后与鲁米诺反应产生发光。在pH 13.2或0.5 mol/L KCl条件下,0.59 V处ECL峰的肩峰变为0.31 V处的ECL峰。鲁米诺自由基转化为激发态的3 - 氨基邻苯二甲酸酯可能有两条途径。在这些条件下,两条途径可能以不同的速率进行,从而形成另一个ECL峰。得出的结论是,鲁米诺ECL可以很容易地被在不同施加电位下电生成的各种含氧物种激发。在PIGE上不同电位处获得的三个强ECL峰可能具有提高对某些分析物检测的分析选择性和灵敏度的潜力。

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