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Multichannel Electrochemiluminescence of Luminol in Neutral and Alkaline Aqueous Solutions on a Gold Nanoparticle Self-Assembled Electrode

机译:金纳米粒子自组装电极在中性和碱性水溶液中鲁米诺的多通道电化学发光

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The electrochemiluminescence (ECL) behavior of luminol on a gold nanoparticle self-assembled electrode in neutral and alkaline pH conditions was studied under conventional cyclic voltammetry (CV). The gold nanoparticle self-assembled electrode exhibitied excellent electrocatalytic property and redox reactivity to the luminol ECL system. In neutral solution, four ECL peaks were observed at 0.69, 1.03, -0.45, and -1.22 V (vs SCE) on the curve of ECL intensity versus potential. Compared with a bulk gold electrode, two anodic and one cathodic ECL peaks were greatly enhanced, and one new cathodic ECL peak appeared. In alkaline solution, two anodic ECL peaks were obtained at 0.69 and 1.03 V, which were much stronger than those on a bulk gold electrode. These ECL peaks were found to depend on gold nanoparticles on the surface of the electrode, potential scan direction and range, the presence of O_(2) or N_(2), the pH and concentration of luminol solution, NaBr concentration, and scan rate. The emitter of all ECL peaks was identified as 3-amino-phthalate by analyzing the ECL spectra. The spatial distribution of the luminol ECL peaks on the gold nanoparticle self-assembled electrode was studied by CCD. The surface state of the gold nanoparticle self-assembled electrode was characterized by scanning electron microscopy (SEM) and UV-visible reflection spectra. The mechanism for the formation of these ECL peaks has been proposed. The results indicate that the gold nanoparticle self-assembled electrode could lead to novel ECL properties, and strong luminol ECL in neutral and alkaline solutions could be obtained on such an electrode, which is of great analytical potential.
机译:在常规循环伏安法(CV)下研究了鲁米诺在金纳米颗粒自组装电极上在中性和碱性pH条件下的电化学发光(ECL)行为。金纳米粒子自组装电极表现出优异的电催化性能和对鲁米诺ECL系统的氧化还原反应性。在中性溶液中,在ECL强度与电位的关系曲线上,在0.69、1.03,-0.45和-1.22 V(vs SCE)处观察到四个ECL峰。与块状金电极相比,两个阳极和一个阴极ECL峰大大增强,并且出现了一个新的阴极ECL峰。在碱性溶液中,在0.69和1.03 V处获得了两个阳极ECL峰,这比在大块金电极上要强得多。发现这些ECL峰取决于电极表面上的金纳米颗粒,电势扫描方向和范围,O_(2)或N_(2)的存在,鲁米诺溶液的pH和浓度,NaBr浓度以及扫描速率。通过分析ECL光谱,可以确定所有ECL峰的发射体为3-氨基邻苯二甲酸酯。用CCD研究了金纳米颗粒自组装电极上鲁米诺ECL峰的空间分布。金纳米粒子自组装电极的表面状态通过扫描电子显微镜(SEM)和紫外可见反射光谱表征。已经提出了形成这些ECL峰的机理。结果表明,金纳米粒子自组装电极具有新的电化学发光性能,在中性和碱性溶液中均能获得强鲁米诺电化学发光,具有很大的分析潜力。

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