Institute of Nano Electronic Engineering, Universiti Malaysia Perlis (UniMAP), 01000, Kangar, Perlis, Malaysia.
Faculty of Chemical Engineering Technology, Universiti Malaysia Perlis (UniMAP), 02600 Arau, Perlis, Malaysia.
Mikrochim Acta. 2021 Mar 31;188(4):144. doi: 10.1007/s00604-021-04794-1.
A conventional photolithography technique was used to fabricate three types of Archimedean-spiral interdigitated electrodes (AIDEs) containing concentric interlocking electrodes with different electrode and gap sizes, i.e., 150 μm (D1), 100 μm (D2), and 50 μm (D3). The precision of the fabrication was validated by surface topography using scanning electron microscopy, high power microscopy, 3D-nano profilometry, and atomic force microscopy. These AIDEs were fabricated with a tolerance of ± 6 nm in dimensions. The insignificant current variation at the pico-ampere range for all bare AIDEs further proved the reproducibility of the device. The large gap sized AIDE (D1) is insensitive to acidic medium, whereas D2 and D3 are insensitive to alkali medium. D2 was the best with regard to its electrical characterization. Furthermore, uniformly synthesized molecularly imprinted polymer (MIP) nanoparticles prepared with human blood clotting factor IX and its aptamer were in the size range 140 to 160 nm, attached on the sensing surface and characterized. The average thickness of deposited MIP film was 1.7 μm. EDX data shows the prominent peaks for silicon and aluminum substrates as 61.79 and 22.52%, respectively. The MIP nanoparticles-deposited sensor surface was characterized by applying it in electrolyte solutions, and smooth curves with the current flow were observed at pH lower than 8 and discriminated against alkali media. This study provides a new MIP amalgamated AIDE with nano-gapped fingers enabling analysis of other biomaterials due to its operation in an ideal buffer range.
采用传统的光刻技术制造了三种阿基米德螺旋叉指电极(AIDE),这些电极包含具有不同电极和间隙尺寸的同心互锁电极,即 150μm(D1)、100μm(D2)和 50μm(D3)。通过扫描电子显微镜、高功率显微镜、3D 纳米轮廓仪和原子力显微镜对表面形貌进行了验证,证明了制造的精度。这些 AIDE 的尺寸公差为±6nm。所有裸 AIDE 在皮安范围的电流变化不明显,进一步证明了器件的可重复性。大间隙尺寸的 AIDE(D1)对酸性介质不敏感,而 D2 和 D3 对碱性介质不敏感。D2 在电特性方面表现最好。此外,使用人凝血因子 IX 及其适体均匀合成的分子印迹聚合物(MIP)纳米颗粒的尺寸在 140 到 160nm 之间,并附着在传感表面上进行了表征。沉积的 MIP 薄膜的平均厚度为 1.7μm。EDX 数据显示硅和铝衬底的突出峰值分别为 61.79%和 22.52%。通过将 MIP 纳米颗粒沉积的传感器表面应用于电解质溶液进行表征,在 pH 值低于 8 时观察到电流流动的平滑曲线,并能区分碱性介质。这项研究提供了一种新型的 MIP 与纳米间隙手指相结合的 AIDE,由于其在理想缓冲范围内运行,因此能够分析其他生物材料。