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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Electrogenerated chemiluminescence of luminol on a gold-nanorod-modified gold electrode
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Electrogenerated chemiluminescence of luminol on a gold-nanorod-modified gold electrode

机译:鲁米诺在纳米金修饰的金电极上的电化学发光

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摘要

Electrogenerated chemiluminescence (ECL) of luminol on a gold-nanorod-modified gold electrode was studied, and five ECL peaks were obtained under conventional cyclic voltammetry in both neutral and alkaline solutions. Among them, four ECL peaks (ECL-1-4) were also observed on a gold-nanosphere-modified gold electrode, but the intensities of these ECL peaks were enhanced about 2-10-fold on a gold-nanorod-modified gold electrode in neutral solution. One new strong ECL peak (ECL-5) was obtained at -0.28 V (vs SCE) on a gold-nanorod-modified gold electrode in both neutral and alkaline solutions and enhanced with an increase in pH. In strong alkaline solutions, ECL-1 and ECL-2 on a gold-nanosphere-modified electrode were much stronger than those on a gold-nanorod-modified gold electrode, while ECL-3-5 appeared to only happen on a gold-nanorod-modified gold electrode. The emitter of all the ECL peaks was identified as 3-aminophthalate. The ECL peaks were found to depend on the scan direction, the electrolytes, the pH, and the presence of O-2 and N-2. The reaction pathways for ECL-4 have been further elucidated, and the mechanism of the new ECL peak (ECL-5) has been proposed. The results indicate that a gold-nanorod-modified gold electrode has a catalytic effect on luminol ECL different from that of a gold-nanosphere-modified gold electrode, revealing that the shape of the metal nanoparticles has an important effect on the luminol ECL behavior. The strong ECL of luminol in neutral solution obtained on a gold-nanorod-modified electrode may be used for the sensitive detection of biologically important compounds in physiological conditions.
机译:研究了金纳米粉修饰金电极上鲁米诺的电化学发光(ECL),并在常规循环伏安法下在中性和碱性溶液中获得了五个ECL峰。其中,在金纳米球修饰的金电极上还观察到四个ECL峰(ECL-1-4),但在金纳米球修饰的金电极上,这些ECL峰的强度提高了约2-10倍在中性溶液中。在中性和碱性溶液中,在金-纳米金修饰的金电极上,在-0.28 V(vs SCE)处获得了一个新的强ECL峰(ECL-5),并且随着pH的增加而增强。在强碱性溶液中,金纳米球修饰电极上的ECL-1和ECL-2比金纳米球修饰金电极上的ECL-1和ECL-2强得多,而ECL-3-5似乎仅发生在金纳米球上修饰的金电极。所有ECL峰的发射峰均被确定为3-氨基邻苯二甲酸酯。发现ECL峰取决于扫描方向,电解质,pH值以及O-2和N-2的存在。进一步阐明了ECL-4的反应途径,并提出了新的ECL峰(ECL-5)的机理。结果表明,金纳米线修饰的金电极对鲁米诺ECL的催化作用不同于金纳米球修饰的金电极,表明金属纳米粒子的形状对鲁米诺的ECL行为具有重要影响。在金纳米线修饰的电极上获得的鲁米诺在中性溶液中的强ECL可用于生理条件下灵敏的生物重要化合物的检测。

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