Lee Yi-Jae, Park Dae-Joon, Park Jae-Yeong, Kim Younghun
Department of Electronic Engineering, Kwangwoon University, 447-1, Wolgye-Dong, Nowon Gu, Seoul, 139-701, Korea.
Department of Chemical Engineering, Kwangwoon University, 447-1, Wolgye-Dong, Nowon-Gu, Seoul, 139-701, Korea.
Sensors (Basel). 2008 Oct 1;8(10):6154-6164. doi: 10.3390/s8106154.
In this paper, optimal conditions for fabrication of nanoporous platinum (Pt) were investigated in order to use it as a sensitive sensing electrode for silicon CMOS integrable non-enzymatic glucose micro-sensor applications. Applied charges, voltages, and temperatures were varied during the electroplating of Pt into the formed nonionic surfactant C16EO8 nano-scaled molds in order to fabricate nanoporous Pt electrodes with large surface roughness factor (RF), uniformity, and reproducibility. The fabricated nanoporous Pt electrodes were characterized using atomic force microscopy (AFM) and electrochemical cyclic voltammograms. Optimal electroplating conditions were determined to be an applied charge of 35 mC/mm2, a voltage of -0.12 V, and a temperature of 25 °C, respectively. The optimized nanoporous Pt electrode had an electrochemical RF of 375 and excellent reproducibility. The optimized nanoporous Pt electrode was applied to fabricate non-enzymatic glucose micro-sensor with three electrode systems. The fabricated sensor had a size of 3 mm x 3 mm, air gap of 10 µm, working electrode (WE) area of 4.4 mm2, and sensitivity of 37.5 µA•L/mmol•cm2. In addition, it showed large detection range from 0.05 to 30 mmolL-1 and stable recovery responsive to the step changes in glucose concentration.
在本文中,研究了制备纳米多孔铂(Pt)的最佳条件,以便将其用作硅CMOS可集成非酶葡萄糖微传感器应用的灵敏传感电极。在将Pt电镀到形成的非离子表面活性剂C16EO8纳米级模具的过程中,改变施加的电荷、电压和温度,以制备具有大表面粗糙度因子(RF)、均匀性和可重复性的纳米多孔Pt电极。使用原子力显微镜(AFM)和电化学循环伏安图对制备的纳米多孔Pt电极进行表征。确定最佳电镀条件分别为施加电荷35 mC/mm2、电压-0.12 V和温度25°C。优化后的纳米多孔Pt电极具有375的电化学RF和出色的可重复性。将优化后的纳米多孔Pt电极应用于制备具有三电极系统的非酶葡萄糖微传感器。制备的传感器尺寸为3 mm×3 mm,气隙为10 µm,工作电极(WE)面积为4.4 mm2,灵敏度为37.5 µA•L/mmol•cm2。此外,它显示出从0.05到30 mmolL-1的大检测范围,并且对葡萄糖浓度的阶跃变化具有稳定的回收率响应。