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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A highly sensitive electrochemical biosensor for catechol using conducting polymer reduced graphene oxide-metal oxide enzyme modified electrode
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A highly sensitive electrochemical biosensor for catechol using conducting polymer reduced graphene oxide-metal oxide enzyme modified electrode

机译:使用导电聚合物还原氧化石墨烯-金属氧化物酶修饰电极的邻苯二酚高灵敏电化学生物传感器

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The fabrication, characterization and analytical performances were investigated for a catechol biosensor, based on the PEDOT-rGO-Fe2O3-PPO composite modified glassy carbon (GC) electrode. The graphene oxide (GO) doped conducting polymer poly (3,4-ethylenedioxythiophene) (PEDOT) was prepared through electrochemical polymerization by potential cycling. Reduction of PEDOT-GO was carried out by amperometric method. Fe2O3 nanoparticles were synthesized in ethanol by hydrothermal method. The mixture of Fe2O3, PPO and glutaraldehyde was tasted on the PEDOT-rGO electrode. The surface morphology of the modified electrodes was studied by FE-SEM and AFM. Cyclic voltammetric studies of catechol on the enzyme modified electrode revealed higher reduction peak current. Determination of catechol was carried out successfully by Differential Pulse Voltammetry (DPV) technique. The fabricated biosensor investigated shows a maximum current response at pH 6.5. The catechol biosensor exhibited wide sensing linear range from 4 x 10(-8) to 6.20 x 10(-5) M, lower detection limit of 7 x 10(-9) M, current maxima (I-max) of 92.55 mu A and Michaelis-Menten (Km) constant of 30.48 mu M. The activation energy (Ea) of enzyme electrode is 35.93 KJ mol(-1) at 50 degrees C. There is no interference from D-glucose and L-glutamic acid, ascorbic acid and o-nitrophenol. The PEDOT-rGO-Fe2O3-PPO biosensor was stable for at least 75 days when stored in a buffer at about 4 degrees C. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了基于PEDOT-rGO-Fe2O3-PPO复合修饰玻碳电极的邻苯二酚生物传感器的制备,表征和分析性能。氧化石墨烯(GO)掺杂的导电聚合物聚(3,4-乙撑二氧噻吩)(PEDOT)是通过电势循环电化学聚合制备的。通过安培法还原PEDOT-GO。水热法在乙醇中合成了Fe2O3纳米粒子。在PEDOT-rGO电极上品尝了Fe2O3,PPO和戊二醛的混合物。通过FE-SEM和AFM研究了修饰电极的表面形貌。酶修饰电极上邻苯二酚的循环伏安研究表明,还原峰电流更高。通过差示脉冲伏安法(DPV)技术成功进行了儿茶酚的测定。所研究的预制生物传感器显示在pH 6.5时的最大电流响应。儿茶酚生物传感器的线性范围从4 x 10(-8)到6.20 x 10(-5)M,检测下限为7 x 10(-9)M,最大电流(I-max)为92.55μA和Michaelis-Menten(Km)常数为30.48μM。酶电极的活化能(Ea)在50摄氏度下为35.93 KJ mol(-1)。D-葡萄糖和L-谷氨酸,抗坏血酸没有干扰酸和邻硝基苯酚。当将PEDOT-rGO-Fe2O3-PPO生物传感器存储在约4摄氏度的缓冲液中时,至少可以稳定75天。(C)2015 Elsevier B.V.保留所有权利。

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