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TiO2/reduced graphene oxide nanocomposite as efficient ascorbic acid amperometric sensor

机译:TiO2 /氧化石墨烯纳米复合材料,如有效的抗坏血酸电压传感器

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摘要

In sensor research community, the advances in materials are main strategy for driving developments in the field, with an ultimate objective to enhance three interrelated analytical parameters that are sensor sensitivity, selectivity and response time. Herein, we demonstrate the design and fabrication of highly sensitive and selective amperometric sensor to detect ascorbic acid (AA) with rapid and reproducible response behavior. The sensor based on glassy carbon electrode (GCE) that initially modified with novel TiO2/reduced graphene oxide (rGO) nanocomposites synthesized by simple chemical and calcination processes. The as-synthesized nanocomposite was fully characterized by XRD, FITR-Raman, SEM-EDS and TEM, which revealed wrinkled wave like 2-D graphene nano-sheets with crystalline anatase phase of TiO2 nanoparticles anchored on the surface. Cyclic voltammetry and electrochemical impedance spectroscopy showed enhanced electrochemical activity of TiO2/rGO nanocomposite modified GCE compared to either bare GCE or TiO2 modified electrode. Sensor analytical parameters derived from amperometric measurements indicated outstanding sensing performance, giving a superior sensitivity 1.061 pA NM-1 cm-2, low limit of detection (LOD) 1.19 pM at (S/N = 3) within a linear range of AA concentration (25 to 725 pM) with a correlation coefficient R-2 = 0.9888 and a rapid response time 5 s. The newly proposed sensor electrode exhibits unique electrochemical stability, repeatability and high selectivity in the presence of common interfering species of glucose, dopamine, citric acid or uric acid. The kinetic study indicated the electrode reaction proceeds via a diffusion-controlled process. The current TiO2/rGO nanocomposite modified GCE gives acceptable detection result towards a commercially available vitamin C supplement.
机译:在传感器研究界中,材料的进步是驾驶现场发展的主要策略,终极目标是增强三种相互关联的分析参数,这些参数是传感器灵敏度,选择性和响应时间。在此,我们证明了高敏感和选择性化浆性传感器的设计和制造,以检测具有快速和可再现的响应行为的抗坏血酸(AA)。最初用简单的化学和煅烧方法合成的具有新型TiO 2 / X型氧化石墨烯(RGO)纳米复合材料的玻碳电极(GCE)的传感器。通过XRD,FITR-Raman,SEMEDS和TEM完全表征了AS合成的纳米复合材料,其揭示了皱纹的波状波,其具有锚定在表面上的TiO2纳米颗粒的结晶锐钛矿相。与裸GCE或TiO 2改性电极相比,循环伏安法和电化学阻抗光谱显示器显着的TiO2 / Rgo纳米复合材料改性GCE的电化学活性。传感器分析参数源自安培测量,表明了优异的感测性能,给出了卓越的灵敏度1.061Pa nm-1cm-2,在AA浓度的线性范围内(S / N = 3)在(S / N = 3)内的119μm下降(LOD)。 25至725 pm),相关系数R-2 = 0.9888和快速响应时间& 5秒。新提出的传感器电极在常见的葡萄糖,多巴胺,柠檬酸或尿酸的情况下表现出独特的电化学稳定性,可重复性和高选择性。动力学研究表明,电极反应通过扩散控制的方法进行。目前的TiO2 / Rgo纳米复合材料改性GCE为市售的维生素C补充剂提供了可接受的检测结果。

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