Laboratory Medical Physics and Biophysics, Department of Physics, Faculty of Sciences and Data Analytic, Sepuluh Nopember Technology Institute, Surabaya 60111, Indonesia.
Research Center for Accelerator Technology, Research Organization of Nuclear Energy, National Research and Innovation Agency (BRIN), Yogyakarta 55281, Indonesia.
Molecules. 2023 Jan 7;28(2):617. doi: 10.3390/molecules28020617.
The fabrication of a ZnO/Au nanosquare-array electrode was successfully carried out for the detection of glucose concentration in biomedical applications. The fabrication of the ZnO/Au nanosquare array using an ultra-thin alumina mask (UTAM) based on the imprinted anodic aluminum oxide (AAO) template and the direct current (DC) sputtering method was able to produce a very well-ordered nanosquare arrangement with a side size of 300 nm and a thickness of 100 nm. Tests were done to evaluate the performance of the electrode by means of cyclic voltammetry (CV) which showed that the addition of glucose oxidase (GOx) increased the sensitivity of the electrode up to 1180 ± 116 μA mMcm, compared with its sensitivity prior to the addition of GOx of 188.34 ± 18.70 mA mM cm. A i/i ratio equal to ~1 between the peaks of redox reactions was obtained for high (hyperglycemia), normal, and low (hypoglycemia) levels of glucose. The ZnO/Au nanosquare-array electrode was 7.54% more sensitive than the ZnO/Au thin-film electrode. Furthermore, finite-difference time-domain (FDTD) simulations and theoretical calculations of the energy density of the electric and magnetic fields produced by the ZnO/Au electrode were carried out and compared to the results of CV. From the results of CV, FDTD simulation, and theoretical calculations, it was confirmed that the ZnO/Au nanosquare array possessed a significant optical absorption and that the quantum effect from the nanosquare array resulted in a higher sensitivity than the thin film.
成功制备了 ZnO/Au 纳米方阵列电极,用于生物医学应用中葡萄糖浓度的检测。采用基于印迹阳极氧化铝(AAO)模板和直流(DC)溅射法的超薄氧化铝掩模(UTAM),可以制备出非常有序的纳米方阵列,其边长为 300nm,厚度为 100nm。通过循环伏安法(CV)测试评估电极的性能,结果表明,添加葡萄糖氧化酶(GOx)后,电极的灵敏度提高了 1180±116μA mMcm,而添加 GOx 前的灵敏度为 188.34±18.70 mA mM cm。在高(高血糖症)、正常和低(低血糖症)葡萄糖水平下,氧化还原反应峰的 i/i 比约为 1。与 ZnO/Au 薄膜电极相比,ZnO/Au 纳米方阵列电极的灵敏度提高了 7.54%。此外,还进行了 FDTD 模拟和 ZnO/Au 电极产生的电场和磁场能量密度的理论计算,并与 CV 的结果进行了比较。从 CV、FDTD 模拟和理论计算的结果可以证实,ZnO/Au 纳米方阵列具有显著的光吸收特性,而且纳米方阵列的量子效应导致其灵敏度高于薄膜。