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Nonenzymatic Glucose Sensors Based on Copper Sulfides: Effect of Binder-Particles Interactions in Drop-Casted Suspensions on Electrodes Electrochemical Performance

机译:基于硫化铜的非酶葡萄糖传感器:粘合剂颗粒在电极电化学性能上的碎片粒子相互作用的影响

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摘要

The constant progress in novel nanomaterials synthesis has contributed to the rapid development of nonenzymatic glucose sensors. For working electrodes preparation, drop casting proved to be the most convenient and thus most widely applied method. However, appropriate interpretation of obtained electrochemical signal requires in-depth knowledge of limitations related to this technique. In this study, we prepared solutions based on commonly reported polymers for nanostructures immobilization and investigated their influence on copper sulfides distribution on the electrode. Characterization of suspensions properties and behavior of particles during droplet drying revealed that nonionic polyvinylpyrrolidone (PVP) was favorable for electrodes modification with copper sulfides in comparison with Nafion and chitosan. It ensured homogeneity of the suspension as well as the uniform coverage of the electrode surface with particles, what resulted in increased active surface area and, therefore, higher signal from glucose addition. On the other hand, when cationic chitosan was used as a binder, suspensions were agglomerated and, within dry deposits, a coffee-ring effect was observed. Appropriate adjustment of material and polymer interactions led to enhanced electrode electrochemical performance.
机译:新型纳米材料合成中的恒定进展导致非酶葡萄糖传感器的快速发展。对于工作电极制备,滴铸件被证明是最方便,最广泛应用的方法。然而,对获得的电化学信号的适当解释需要深入了解与该技术有关的限制。在该研究中,我们制备了基于常见的纳米结构固定的聚合物的溶液,并研究了它们对电极上硫化铜分布的影响。液滴干燥期间悬浮液性能和颗粒行为的表征显示,与Nafion和壳聚糖相比,非离子聚乙烯吡咯烷酮(PVP)有利于用硫化铜的电极改性。它确保了悬架的均匀性以及颗粒的电极表面的均匀覆盖,导致有源表面积增加,因此来自葡萄糖的较高信号。另一方面,当使用阳离子壳聚糖作为粘合剂时,悬浮液凝聚,并且在干燥沉积物中,观察到咖啡环效果。适当调整材料和聚合物相互作用导致增强电极电化学性能。

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