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Electroconductive Polymers in (Bio)chemical Sensors

机译:(生物)化学传感器中的导电聚合物

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In this paper, research concerning application of electroconducting polymers in biosensors is discussed. Selection of the electropolymers has been limited to those which monomers are water-soluble, such as: polypyrrole and polyaniline. In general, experiments concerning EP utilization in dehydrogenase based biosensors were divided in four stages: (1) incorporation of mediators as dopants of the EP's layer, (2) immobilization of cofactors e.g. NAD+/NADH, (3) immobilization of enzymes and (4) immobilization of all components: mediator, cofactor and enzyme. As a dopant of the PPy water-soluble electroactive compound ferrocyanide was used. Another EP, namely polyaniline was also tested as an electrode material for NADH detection based on its electrochemical oxidation. In the case of simultaneous immobilization of mediator, NAD, and ADH in the PPy layer, as a result of the ethanol oxidation, the oxidation peaks of the mediator become smaller whereas the oxidation peaks of PPy increase. In the analyzed EtOH concentration range (0-2 mM), slope of calibration curve for the PPy oxidation peak was around 20 muA/mM. In the case of PAn deposition on the platinum electrode, decrease of the oxidation potential for NADH by 0.4 V was observed.
机译:在本文中,讨论了有关导电聚合物在生物传感器中的应用的研究。电聚合物的选择限于单体是水溶性的那些,例如:聚吡咯和聚苯胺。通常,关于基于脱氢酶的生物传感器中的EP利用的实验分为四个阶段:(1)掺入作为EP层的掺杂剂的介体;(2)固定辅因子,例如EP。 NAD + / NADH,(3)固定酶,(4)固定所有组分:介体,辅因子和酶。作为PPy的掺杂剂,使用水溶性亚铁氰化物。基于其电化学氧化,还测试了另一种EP,即聚苯胺作为NADH检测的电极材料。在将介体,NAD和ADH同时固定在PPy层中的情况下,由于乙醇氧化,介体的氧化峰变小而PPy的氧化峰增加。在分析的EtOH浓度范围(0-2 mM)中,PPy氧化峰的校正曲线的斜率约为20μA/ mM。在铂电极上沉积PAn的情况下,观察到NADH的氧化电位降低了0.4V。

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