首页> 外文期刊>RSC Advances >Deposition of an ultra-thin polyaniline coating on a TiO2 surface by vapor phase polymerization for electrochemical glucose sensing and photocatalytic degradation
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Deposition of an ultra-thin polyaniline coating on a TiO2 surface by vapor phase polymerization for electrochemical glucose sensing and photocatalytic degradation

机译:通过气相聚合对电化学葡萄糖感应和光催化降解的气相聚合来沉积超薄聚苯胺涂层。

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Here, we have synthesized an ultra-thin coating of polyaniline on a TiO _(2) nanoparticle surface (PANI–TiO _(2) ) using a simple vapor phase polymerization method. By this method, an ultra-thin layer of PANI is obtained selectively on the TiO _(2) surface. This ultra-thin coating exhibits the properties of both the parent materials due to the composite surface causing an effective synergistic effect. SEM, TEM, and EDX studies and elemental mapping confirmed the formation of ultra-thin films on the TiO _(2) surface. TGA, UV/Vis and XRD studies were also done for further characterization. The composite has been used as a biosensor for glucose detection by immobilization of the enzyme glucose oxidase (GOx). Cyclic voltammetry, electrochemical impedance spectroscopy and amperometry studies were performed for glucose sensing. The linear range was observed from 20 to 140 μM glucose concentration from the amperometric analysis. The LOD of the biosensor was found to be 5.33 μM. The composite has also been used for photocatalytic degradation of the cationic dye Rhodamine B (RB). The order of degradation efficiency of RB is found to be PANI < TiO _(2) < PANI–TiO _(2) . The synergetic effect of PANI and TiO _(2) is the reason for the enhanced degradation efficiency of the composite PANI–TiO _(2) .
机译:这里,我们使用简单的气相聚合方法在TiO _(2)纳米颗粒表面(Pani-TiO _(2))上合成了多苯胺的超薄涂层。通过这种方法,在TiO _(2)表面上选择性地获得超薄的PANI层。由于复合表面引起有效协同效应,这种超薄涂层具有由于复合表面而导致的母材料的性质。 SEM,TEM和EDX研究和元素映射证实了TiO _(2)表面上的超薄膜的形成。还进行了TGA,UV / Vis和XRD研究以进行进一步表征。通过固定酶葡萄糖氧化酶(GOX),复合材料已被用作葡萄糖检测的生物传感器。对葡萄糖感测进行循环伏安法,电化学阻抗光谱和安培测量研究。从电流分析中观察到线性范围从20至140μM葡萄糖浓度观察到。发现生物传感器的床位为5.33μm。复合材料还用于阳离子染料罗丹明B(RB)的光催化降解。发现RB的降解效率的顺序是PANI

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