Institute of Analytical Chemistry, Department of Chemistry, Soochow University, Dushu Lake Higher Education Town, Suzhou Industrial Park, Suzhou, 215123, P. R. China.
Analyst. 2012 Apr 21;137(8):1922-9. doi: 10.1039/c2an16268g. Epub 2012 Mar 1.
With TiO(2) nanoparticles as carrier, a supported nano-material of Au atomic cluster/TiO(2) nano-hybrid was synthesized. It was then modified onto the surface of indium tin oxide (ITO) by Nafion to act as a working electrode for exciting the electrochemiluminescence (ECL) of luminol. The properties of the nano-hybrid and the modified electrode were characterized by XRD, XPS, electronic microscopy, electrochemistry and spectroscopy. The experimental results demonstrated that the modification of this nano-hybrid onto the ITO electrode efficiently intensified the ECL of luminol. It was also revealed that the ECL intensity of luminol on this modified electrode showed very sensitive responses to oxygen and hydrogen peroxide. The detection limits for dissolved oxygen and hydrogen peroxide were 2 μg L(-1) and 5.5 × 10(-12) M, respectively. Besides the discussion of the intensifying mechanism of this nano-hybrid for ECL of luminol, the developed method was also applied for monitoring dissolved oxygen and evaluating the scavenging efficiency of reactive oxygen species of the Ganoderma lucidum spore.
以 TiO(2) 纳米粒子为载体,合成了负载型纳米金原子簇/TiO(2)纳米杂化材料。然后通过 Nafion 将其修饰到氧化铟锡(ITO)表面,作为激发鲁米诺电化学发光(ECL)的工作电极。通过 XRD、XPS、电子显微镜、电化学和光谱学对纳米杂化材料和修饰电极的性质进行了表征。实验结果表明,该纳米杂化物修饰到 ITO 电极上可以有效地增强鲁米诺的 ECL。还发现,修饰电极上鲁米诺的 ECL 强度对氧气和过氧化氢表现出非常敏感的响应。溶解氧和过氧化氢的检测限分别为 2μg L(-1)和 5.5×10(-12) M。除了讨论纳米杂化物增强鲁米诺 ECL 的机理外,还应用该方法监测溶解氧,并评估灵芝孢子中活性氧物质的清除效率。