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Amperometric pH Sensor Based on Graphene–Polyaniline Composite

机译:基于石墨烯-聚苯胺复合材料的安培pH传感器

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Here, we report a grapheme–polyaniline (Gr-PANi) composite modified glassy carbon electrode (GCE) as an amperometric pH sensor. Gr-PANi composite was synthesized by electro-deposition of PANi on the surface of Gr modified GCE using the cyclic voltammetry technique. XRD and Raman analysis confirmed high crystallinity of Gr-PANi composite. FESEM analysis revealed that Gr flakes are surrounded by PANi film because of the heterogeneous nucleation and growth of PANi during electro-polymerization. In acidic region, current of the composite-based pH sensor increased with decreasing pH values of the solution, whereas in alkaline region, current increased with the increasing pH values of the solution. The as-fabricated pH sensor exhibits shorter response time with an excellent sensitivity of - 50.14 μA pH−1 cm −2 in the range of pH 1–5 and 139.2 μA pH−1 cm −2 in the range of pH 7–11. The composite-based sensor showed enhanced sensitivity compared with pure Gr-based pH sensor because unlike pristine Gr-based pH sensor, it utilizes both charge-storage mechanisms in EDLCs and pseudo-capacitors, thereby resulting in excellent synergy between Gr and PANi. Reproducibility of the pH sensor was also examined between three different electrodes in the solution of pH 5. Insignificant variation in the current response suggested excellent reproducibility of pH sensor. To the best of our knowledge, no other studies have been reported on the Gr-PANi composite-based pH sensor over wide pH range. This Gr-PANi-based pH sensor offers a simple, low-cost, promising, real-time amperometric pH sensor in chemistry, clinical diagnostics, bio-sensing, and environmental monitoring applications.
机译:在这里,我们报道了一种石墨烯-聚苯胺(Gr-PANi)复合修饰玻碳电极(GCE)作为电流型pH传感器。采用循环伏安法,通过将PANi电沉积在Gr修饰的GCE表面,合成了Gr-PANi复合材料。 XRD和拉曼分析证实了Gr-PANi复合材料的高结晶度。 FESEM分析表明,由于电聚合过程中PANi的异质成核和生长,Gr薄片被PANi膜包围。在酸性区域,基于复合材料的pH传感器的电流随着溶液pH值的降低而增加,而在碱性区域,电流随着溶液pH值的升高而增加。制成的pH传感器具有更短的响应时间,在pH 1-5的范围内具有-50.14μApH-1 cm -2的出色灵敏度,在pH 7-11的范围内具有139.2μApH-1 cm -2的出色灵敏度。与基于纯Gr的pH传感器相比,基于复合材料的传感器显示出更高的灵敏度,因为与原始的基于Gr的pH传感器不同,它同时利用了EDLC和伪电容器中的电荷存储机制,从而在Gr和PANi之间产生了出色的协同作用。在pH值为5的溶液中的三个不同电极之间,还检查了pH传感器的可重复性。电流响应的显着变化表明pH传感器具有出色的可重复性。据我们所知,关于Gr-PANi复合pH传感器在宽pH范围内没有其他研究报道。这种基于Gr-PANi的pH传感器在化学,临床诊断,生物传感和环境监测应用中提供了一种简单,低成本,有希望的实时安培pH传感器。

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