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A facile synthesis of novel polyaniline/graphene nanocomposite thin films for enzyme-free electrochemical sensing of hydrogen peroxide

机译:小说的简单合成聚苯胺/石墨烯enzyme-free纳米复合材料薄膜过氧化氢的电化学传感

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The electrochemical method is the most effective,facile,and economical approach for the detection of small molecules.The present article deals with the design and engineering of polymer-graphene-based thin films through an in situ facile synthesis technique for the development of high performance electrochemical sensors.We report a facile technique for preparing polyaniline(PANI)and polyaniline/graphene(PANI/G)nanocomposite thin films and their application as enzyme-free electrochemical sensors for hydrogen peroxide(H2O2).PANI and PANI/G films were deposited on a dopamine modified ITO substrate via spin coating and in situ deposition techniques.The in situ fabricated films,which exhibited better electrical properties and stability as compared to the spin coated films,were studied in detail.These thin films were characterized using UV-visible spectroscopy,FT-IR spectroscopy,Raman spectroscopy,scanning electron microscopy(SEM),and atomic force microscopy(AFM)to study their optical,chemical,and surface textural properties.Results show a homogeneous distribution of the constituting materials.From the AFM results,it was found out that the PANI/G film showed increased surface roughness(~20 nm)as compared to the PANI film(~15 nm).The electrochemical properties of the films were determined using the van der Pauw method and cyclic voltammetry technique.The conductivity of the PANI and PANI/G films was estimated to be 5.38 × 10~3 and 6.84 × 10~3 S cm~(-1),respectively.Finally,the electrochemical sensing performances of the PANI and PANI/G films were investigated towards H2O2 reduction in a wide potential range of-0.6 to 0.6 V in 0.1 M PBS solution of pH 7.0.This work demonstrates the application of thin-film technology for the development of nanodevice sensors.
机译:电化学方法是最有效、简单、经济的方法小分子的检测。处理的设计和工程通过一个在polymer-graphene-based薄膜现场的合成技术高性能电化学的发展传感器。聚苯胺(PANI)和做准备聚苯胺(PANI / G) /石墨烯纳米复合材料enzyme-free电影和他们的应用程序氢的电化学传感器双氧水(过氧化氢)。多巴胺修饰ITO衬底沉积通过旋转涂布和原位沉积技术。表现出更好的电气性能和稳定而旋转涂布电影,详细进行了研究。使用紫外可见特征光谱、傅立叶变换红外光谱,拉曼光谱,扫描电子显微镜(SEM)和原子力显微镜(AFM)研究他们光学、化学和表面结构属性。分布的构成材料。AFM结果,发现PANI / G影片显示,增加表面粗糙度(~ 20海里)聚苯胺膜相比(~ 15海里)。电化学性能的电影使用van der波夫方法和确定循环伏安法技术。聚苯胺和聚苯胺/ G电影被估计5.38×10 ~ 3和6.84×10 ~ 3 S厘米~(- 1),分别。传感性能的聚苯胺和聚苯胺/ G电影减少了对过氧化氢在吗潜在范围宽0.1米- 0.6到0.6 V的PBS溶液的pH值7.0。薄膜技术的应用程序nanodevice传感器的发展。

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