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用于测定抗坏血酸的高性能聚吡咯修饰微阵列传感器的制作与特性研究。

Fabrication and characterisation of high performance polypyrrole modified microarray sensor for ascorbic acid determination.

机构信息

Alagappa University, Karaikudi, Tamil Nadu, India.

出版信息

Anal Chim Acta. 2013 Sep 2;793:11-8. doi: 10.1016/j.aca.2013.06.049. Epub 2013 Jul 6.

Abstract

In this study, gold microelectrode array (Au/MEA) with electrode of 12 μm diameter was fabricated by photolithography technique. Subsequently, polypyrrole (Ppy) modified gold microarrays sensor (Ppy/Au/MEA) was prepared by cyclic voltammetry technique. The deposition potential range and number of cycles were optimised in order to get optimum thickness of Ppy film. Scanning Electron Microscope and Atomic Force Microscope investigations reveal that Ppy coating formed at 3 cycles is porous with thickness of 1.5 μm which exhibiting high catalytic current for ascorbic acid (AA) in square wave technique (SWV). In contrast to earlier sensors designs, these Ppy/Au/MEA sensors exhibits lower detection limit (LOD) of 10 nm towards AA at physiological conditions. It also exhibits enhanced sensitivity (2.5 mA cm(-2) mM(-1)) and long range of linear detection limit from 10 nm to 2.8 mM. In the same way, polypyrrole modified macro Au (Ppy/Au/MA) biosensor was also fabricated and its electro catalytic property towards AA was compared with that of Ppy/Au/MEA. The Ppy/Au/MA exhibits sensitivity of only 0.27 mA cm(-2) mM(-1), LOD of 5 μM and linear range of 10 μM to 2.2mM. Hence, our investigations indicate that the Ppy/Au/MEA could serve as highly sensitive sensor for AA than any of the earlier designs. So, the Ppy/Au/MEA electrode was utilised for determination AA in a wide variety of real samples.

摘要

在这项研究中,通过光刻技术制造了直径为 12μm 的金微电极阵列(Au/MEA)。随后,通过循环伏安技术制备了聚吡咯(Ppy)修饰的金微阵列传感器(Ppy/Au/MEA)。为了获得最佳的 Ppy 膜厚度,优化了沉积电位范围和循环次数。扫描电子显微镜和原子力显微镜研究表明,在 3 次循环下形成的 Ppy 涂层具有 1.5μm 的厚度,呈多孔状,在方波技术(SWV)中对抗坏血酸(AA)表现出高催化电流。与早期的传感器设计相比,这些 Ppy/Au/MEA 传感器在生理条件下对 AA 的检测下限(LOD)低至 10nm。它还表现出增强的灵敏度(2.5mA cm(-2) mM(-1))和从 10nm 到 2.8mM 的线性检测范围。同样,也制备了聚吡咯修饰的宏观 Au(Ppy/Au/MA)生物传感器,并比较了其对 AA 的电催化性能与 Ppy/Au/MEA 的性能。Ppy/Au/MA 的灵敏度仅为 0.27mA cm(-2) mM(-1),LOD 为 5μM,线性范围为 10μM 至 2.2mM。因此,我们的研究表明,Ppy/Au/MEA 可以作为比任何早期设计都更灵敏的 AA 传感器。因此,我们利用 Ppy/Au/MEA 电极测定了各种实际样品中的 AA。

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