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Growth of polypyrrole-horse radish peroxidase microstructures for H2O2 biosensor

机译:H 2 O 2 生物传感器的聚吡咯-马萝卜过氧化物酶微结构的生长

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Conducting polymer microstructures for enzymatic biosensors are developed by a facile electrochemical route. Horse radish peroxide entrapped polypyrrole films with bowl shaped microstructures are developed on stainless steel (SS 304) substrates by a single step process. Potentiodynamic scanning/cyclic voltammetry is used for generation of polypyrrole microstructures using electro generated oxygen bubbles stabilized by zwitterionic surfactant/buffer N-2-Hydroxyethyl piperazine N-2-ethane sulfonic acid (HEPES) as soft templates. Scanning electron microscopic images reveal the bowl shaped structures surrounded by cauliflower like fractal polypyrrole films and globular nanostructures. Raman spectroscopy reveals the oxidized nature of the film. Amperometric biosensor responses are good with sensitivity of 1.1μA/(cm2.mM) in 0-10 mM H2O2 concentration range at -0.15 V.
机译:酶促生物传感器的导电聚合物微结构是通过简便的电化学途径开发的。通过一步法在不锈钢(SS 304)基材上开发了具有碗状微结构的夹有辣根过氧化物的聚吡咯膜。电位动力学扫描/循环伏安法通过使用两性离子表面活性剂/缓冲液N-2-羟乙基哌嗪N-2-乙烷磺酸(HEPES)稳定的电产生的氧气泡作为软模板来生成聚吡咯微结构。扫描电子显微镜图像显示碗状结构被花椰菜包围,如分形聚吡咯膜和球状纳米结构。拉曼光谱揭示了膜的氧化性质。在0-10 mM H 2 O 2 浓度范围内,安培生物传感器响应良好,灵敏度为1.1μA/(cm 2 .mM) -0.15V。

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