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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Highly selective amperometric sensor for the trace level detection of hydrazine at bismuth nanoparticles decorated graphene nanosheets modified electrode
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Highly selective amperometric sensor for the trace level detection of hydrazine at bismuth nanoparticles decorated graphene nanosheets modified electrode

机译:高选择性安培传感器,用于检测铋纳米颗粒上肼的痕量修饰石墨烯纳米片修饰电极

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摘要

A highly selective amperometric sensor was developed for the trace level determination of hydrazine at bismuth nanoparticles (Bi) decorated graphene nanosheets (GR) composite film modified glassy carbon electrode (GCE). GR-Bi nanocomposite has been successfully prepared via simple and facile chemical reduction approach and its structure was characterized by various techniques. Surface morphological and X-ray diffraction studies revealed the formation and high loading of Bi nanoparticles on graphene sheets. GR-Bi nanocomposite modified GCE exhibited greatly enhanced electrocatalytic performance towards electro-oxidation of hydrazine in terms of decrease in overpotential and increase in oxidation peak current (I_p). The kinetic parameters such as electron transfer coefficient (α) and diffusion coefficient (D_o) of the hydrazine oxidation were determined to be 0.70 and 2.65 × 10~(-5) cm~2 s~(-1), respectively. An amperometric sensor has been fabricated which detects trace level concentration of hydrazine. The sensor exhibited a wide linear range from 20 nM to 0.28 mM and a very low detection limit (LOD) of 5 nM. Remarkably, this is the lowest LOD achieved for the determination of hydrazine in neutral pH among other reported electrochemical hydrazine sensors. In addition, the sensor selectively detects hydrazine even in the presence of 1000 fold excess quantity of common interferrants. The practical feasibility of the sensor has been assessed in water and urine samples with good recoveries. Furthermore, the sensor exhibited appreciable stability, repeatability and reproducibility results.
机译:开发了一种高选择性安培传感器,用于在铋纳米颗粒(Bi)装饰的石墨烯纳米片(GR)复合膜修饰的玻碳电极(GCE)上痕量肼的测定。 GR-Bi纳米复合材料已通过简单,简便的化学还原方法成功制备,其结构已通过多种技术表征。表面形态学和X射线衍射研究表明,石墨烯片上Bi纳米粒子的形成和高负载。 GR-Bi纳米复合材料修饰的GCE在降低过电势和增加氧化峰电流(I_p)方面显示出对肼电氧化的大大增强的电催化性能。确定肼氧化的动力学参数如电子传递系数(α)和扩散系数(D_o)分别为0.70和2.65×10〜(-5)cm〜2 s〜(-1)。已制造出可检测痕量肼浓度的安培传感器。该传感器的线性范围从20 nM到0.28 mM,检测限(LOD)仅为5 nM。值得注意的是,这是在其他已报道的电化学肼传感器中,在中性pH中测定肼时最低的LOD。此外,即使在常见干扰素过量1000倍的情况下,该传感器也可以选择性检测肼。已在水和尿液样品中评估了传感器的实际可行性,回收率良好。此外,该传感器表现出明显的稳定性,可重复性和可再现性结果。

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