Wang Zhi-yong, Guo Wen-ying, Di Jun-wei, Tu Yi-feng
College of Chemistry and Chemical Engineering, Suzhou University, Suzhou 215006, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2005 Oct;25(10):1564-7.
The indium tin oxide(ITO) glass was applied as the electrode to study the electrochemilumuinescent behavior of luminol on its surface. The experimental results indicated that it was an excellent electrode material for ECL of luminol with very high sensitivity. The detection limit of the luminol is as low as 10(-15) mol x L(-1) order of magnitude. Compared with the voltammetric behavior of luminol, it was revealed that both the two oxidation processes of luminol led to the emission of ECL on the surface of ITO glass,which was different from the ECL behavior of luminol on platinum electrode. Although the ECL intensity of first step oxidation of luminol was relative weak than that of the second step oxidation, it was profitable because it was a reversible process and more stable. It might be useful to fabricate the flow-cell of ECL based on its ECL activity and transparence for light. The influences of the electric parameters and the dissolved oxygen on luminol's ECL on the ITO glass, and the mechanism were also studied in the present paper.
将氧化铟锡(ITO)玻璃用作电极,研究鲁米诺在其表面的电化学发光行为。实验结果表明,它是用于鲁米诺电化学发光的优良电极材料,具有很高的灵敏度。鲁米诺的检测限低至10(-15)mol·L(-1)数量级。与鲁米诺的伏安行为相比,发现鲁米诺的两个氧化过程均导致ITO玻璃表面发射电化学发光,这与鲁米诺在铂电极上的电化学发光行为不同。尽管鲁米诺第一步氧化的电化学发光强度比第二步氧化的相对较弱,但这是有益的,因为它是一个可逆过程且更稳定。基于其电化学发光活性和光透明度来制造电化学发光流通池可能会很有用。本文还研究了电学参数和溶解氧对ITO玻璃上鲁米诺电化学发光的影响及其机理。