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Positively-charged hierarchical PEDOT interface with enhanced electrode kinetics for NADH-based biosensors

机译:带正电荷的分层界面,具有基于NADH的生物传感器的增强电极动力学

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Poly(ethylenedioxythiophene) (PEDOT) has attracted considerable attention as an advanced electrode material for electrochemical sensors and biosensors, due to its unique electrical and physicochemical properties. Here, we demonstrate the facile preparation of a positively-charged and hierarchical micro-structured PEDOT electrochemical interface with enhanced electrode kinetics for the electrooxidation of NADH. Processable PEDOT colloidal microparticles (PEDOT CMs) were synthesised by template-assisted polymerisation and were then utilised as building blocks for the fabrication of hierarchically-structured electrodes with a larger accessible electroactive surface (2.8 times larger than that of the benchmark PEDOT:PSS) and inter-particle space, thus improving electrode kinetics. The intrinsic positive charge of the PEDOT CMs further facilitated the detection of negatively-charged molecules by electrostatic accumulation. Due to the synergistic effect, these hierarchically structured PEDOT CMs electrodes exhibited improved NADH electrooxidation at lower potentials and enhanced electrocatalytic activity compared to the compact structure of conventional PEDOT:PSS electrodes. The PEDOT CMs electrodes detected NADH over the range of 20-240 mu M, with a sensitivity of 0.0156 mu A/mu M and a limit of detection of 5.3 mu M. Moreover, the PEDOT CMs electrode exhibited a larger peak separation from the interferent ascorbic acid, and improved stability. This enhanced analytical performance for NADH provides a sound basis for further work coupling to a range of NAD-dependent dehydrogenases for applications in biosensing, bio-fuel cells and biocatalysis.
机译:由于其独特的电化学和物理化学性质,聚(乙二氧基噻吩)(PEDOT)(PEDOT)吸引了电化学传感器和生物传感器的先进电极材料。在这里,我们证明了具有带正电荷和分层微结构佩特电化学界面的容纳制备,其具有增强电极动力学,用于NADH的电氧化。通过模板辅助聚合合成可加工的佩特胶体微粒(PEDOT CMS),然后用作制造具有较大可接近的电活性表面的分层结构电极的构建块(比基准PEDOT的2.8倍)和粒子间隙,从而改善电极动力学。 PEDOT CMS的固有正电荷进一步促进了通过静电积分检测带负电的分子。由于协同效应,与传统PEDOT的紧凑结构相比,这些分层结构的佩特CMS电极在较低电位和增强的电催化活性下表现出改善的NADH电氧化。 PEDOT CMS电极检测到NADH在20-240μm的范围内,灵敏度为0.0156μA/ mu m,并且检测限为5.3μm。此外,佩特CMS电极从干扰表现出更大的峰值分离抗坏血酸,提高稳定性。对于NADH的这种增强的分析性能为进一步工作耦合到一系列NAD依赖性脱氢酶的基础提供了一种用于生物传感,生物燃料电池和生物催化的应用。

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