基于蒽醌功能化离子液体的一次性电化学传感器用于无酶检测过氧化氢

P. Manusha, Theyagarajan K, Mari Elancheziyan, Harisingh Shankar, K. Thenmozhi, S. Senthilkumar
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摘要

采用离子液体(IL)标记的蒽醌修饰电极(AQ- pf6 -IL)设计并制备了一种简单、选择性的无酶H2O2电化学传感器。对新合成的AQ-PF6-IL进行了系统表征,并将其固定在丝网印刷电极上制备了AQ-PF6-IL/SPE。AQ-PF6-IL/SPE的电化学研究表明,蒽醌/蒽对苯二酚氧化还原对具有明显的氧化还原峰。有趣的是,与AQ/SPE相比,AQ- pf6 - il /SPE在AQ形式电位降低时显示出更高的峰值电流。进一步研究了AQ-PF6-IL/SPE对H2O2还原的电催化活性。观察到阴极峰值电流的快速而明显的增强,从而证明了新开发的传感器对H2O2的优异电化学还原。此外,AQ-PF6-IL/SPE在10 ~ 1228 μM的浓度范围内具有良好的线性行为,灵敏度为0.281 μA μM−1 cm−2,检出限为2.87 μM。所制备的传感器稳定性好,抗干扰能力强,重现性好。该传感器的优异性能归功于新设计的AQ- pf6 -IL,其中AQ介质的氧化还原特性与IL的高稳定性和导电性相结合。
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Anthraquinone Functionalized Ionic Liquid Based Disposable Electrochemical Sensor for the Enzyme-Free Detection of Hydrogen Peroxide
A simple and selective enzyme-free electrochemical sensor for H2O2 has been designed and fabricated using ionic liquid (IL) tagged anthraquinone (AQ) modified electrode (AQ-PF6-IL). This newly synthesized AQ-PF6-IL has been systematically characterized, after which it has been immobilized over a screen-printed electrode to produce AQ-PF6-IL/SPE. The electrochemical investigation of AQ-PF6-IL/SPE displayed a set of distinct redox peaks attributable to the anthraquinone/anthrahydroquinone redox pair. Interestingly, AQ-PF6-IL/SPE has shown enhanced peak current at reduced formal potential for AQ, when compared to AQ/SPE. Further, the electrocatalytic activity of AQ-PF6-IL/SPE towards the reduction of H2O2 was investigated with the sequential addition of H2O2. A rapid and appreciable enhancement in cathodic peak currents was observed and thus demonstrating the excellent electrochemical reduction of H2O2 at the newly developed sensor. Besides, AQ-PF6-IL/SPE established a good linear behaviour over a concentration range of 10–1228 μM with a high sensitivity of 0.281 μA μM−1 cm−2 and low detection limit of 2.87 μM. The fabricated sensor displayed excellent stability, good anti-interference ability, along with acceptable reproducibility. The superior properties of the developed sensor could be attributed to the newly designed AQ-PF6-IL, wherein the redox characteristics of AQ mediator are integrated with the high stability and conductivity of IL.
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