Pusat Pengajian Sains Kimia, Universiti Sains Malaysia, 11800 USM Pulau Pinang, Malaysia.
Biosens Bioelectron. 2012 Oct-Dec;38(1):278-83. doi: 10.1016/j.bios.2012.05.044. Epub 2012 Jun 13.
A non-enzymatic glucose sensor of multi-walled carbon nanotube-ruthenium oxide/composite paste electrode (MWCNT-RuO(2)/CPE) was developed. The electrode was characterized by using XRD, SEM, TEM and EIS. Meanwhile, cyclic voltammetry and amperometry were used to check on the performances of the MWCNT-RuO(2)/CPE towards glucose. The proposed electrode has displayed a synergistic effect of RuO(2) and MWCNT on the electrocatalytic oxidation of glucose in 3M NaOH. This was possible via the formation of transitions of two redox pairs, viz. Ru(VI)/Ru(IV) and Ru(VII)/Ru(VI). A linear range of 0.5-50mM glucose and a limit of detection of 33 μM glucose (S/N=3) were observed. There was no significant interference observable from the traditional interferences, viz. ascorbic acid and uric acid. Indeed, results so obtained have indicated that the developed MWCNT-RuO(2)/CPE would pave the way for a better future to glucose sensor development as its fabrication was without the use of any enzyme.
开发了一种基于多壁碳纳米管-氧化钌/复合糊电极(MWCNT-RuO2/CPE)的非酶葡萄糖传感器。采用 XRD、SEM、TEM 和 EIS 对电极进行了表征。同时,循环伏安法和安培法用于检查 MWCNT-RuO2/CPE 对葡萄糖的性能。在 3M NaOH 中,所提出的电极显示出 RuO2 和 MWCNT 对葡萄糖电催化氧化的协同作用。这是通过形成两个氧化还原对的转变来实现的,即 Ru(VI)/Ru(IV) 和 Ru(VII)/Ru(VI)。观察到 0.5-50mM 葡萄糖的线性范围和 33 μM 葡萄糖的检测限(S/N=3)。没有观察到来自传统干扰物(如抗坏血酸和尿酸)的显著干扰。事实上,所得到的结果表明,所开发的 MWCNT-RuO2/CPE 将为葡萄糖传感器的发展铺平道路,因为它的制造不使用任何酶。