Ueno Yuko, Furukawa Kazuaki, Hayashi Katsuyoshi, Takamura Makoto, Hibino Hiroki, Tamechika Emi
NTT Microsystem Integration Laboratories, NTT Corporation, Atsugi, Kanagawa, Japan.
Anal Sci. 2013;29(1):55-60. doi: 10.2116/analsci.29.55.
We have developed a new procedure for fabricating interdigitated array gold electrodes (Au-IDA) modified with reduced graphene oxide (rGO). In this procedure, we coated the gold surface of the micrometer order electrodes with graphene oxide (GO) prior to the reduction and the lift-off processes to avoid short-circuiting the pair of electrodes by conductive rGO flakes after the reduction. We then studied the basic electrochemical activity of the prepared electrodes, rGO/Au-IDA, mainly on p-aminophenol (pAP), because pAP is a good probe for an electrochemical immunoassay. The voltammograms showed that denser rGO provides better electrode reactivity for pAP. We confirmed that redox cycling between the anode and cathode at the rGO/Au-IDA was established, which yields more sensitive detection than with a single electrode. As one application of the electrochemical immunoassay using the rGO/Au-IDA, we demonstrated the quantitative detection of cortisol, a stress marker, at levels found in human saliva.
我们开发了一种制备用还原氧化石墨烯(rGO)修饰的叉指阵列金电极(Au-IDA)的新方法。在此方法中,我们在还原和剥离工艺之前,先用氧化石墨烯(GO)涂覆微米级电极的金表面,以避免还原后导电的rGO薄片使一对电极短路。然后,我们主要针对对氨基苯酚(pAP)研究了制备的电极rGO/Au-IDA的基本电化学活性,因为pAP是电化学免疫分析的良好探针。伏安图表明,更致密的rGO为pAP提供了更好的电极反应活性。我们证实,在rGO/Au-IDA的阳极和阴极之间建立了氧化还原循环,这比单电极检测更灵敏。作为使用rGO/Au-IDA进行电化学免疫分析的一个应用,我们展示了对人唾液中应激标志物皮质醇水平的定量检测。