首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Electro-oxidative polymerization of phenothiazine dyes into a multilayer-containing carbon nanotube on a glassy carbon electrode for the sensitive and low-potential detection of NADH
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Electro-oxidative polymerization of phenothiazine dyes into a multilayer-containing carbon nanotube on a glassy carbon electrode for the sensitive and low-potential detection of NADH

机译:吩噻嗪染料的电氧化聚合到玻璃碳电极上的多层含碳纳米管中,用于灵敏和低电位的NADH检测

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An electrochemical sensing platform was developed for the amperometric detection of β-nicotinamide adenine dinucleotide (NADH) through the integration of a multi-walled carbon nanotube (MWCNT) into electropoly-merized phenothiazine dyes. The composite containing MWCNT and poly(phenothiazine) was prepared by electro-oxidative polymerization of phenothiazine derivatives, Azure B, Azure A and thionine, into an MWCNT/ poly(diallyldimethylammonium chloride) (PDDA) multilayer, which was constructed by electrostatic layer-by-layer assembly on a glassy carbon electrode. The three phenothiazine monomers used in this study exhibited similar electrochemical behaviors. Azure B was used extensively as a model monomer for the investigation. Electrochemical techniques and scanning electron microscopy were used to demonstrate that the porous composite was formed and that the carbon nanotube served as a nano-sized backbone for the loading of polymeric phenothiazine. The electro-catalytic current for NADH oxidation was enhanced as the number of layers increased, implying that the increase of NADH-accessible poly(phenothiazine) and the three-dimensional arrangement of the poly(phenothiazine)-coated MWCNT in the composite facilitated electron and NADH transfer. Under optimal conditions, the detection limit for NADH decreases to 7.0 x 10~(-8)M at a potential of 0.1 V (versus Ag/AgCl) using a {MWCNT/PDDA}8-poly (Azure B) composite modified glassy carbon electrode, with a response time of about 5 s. This work demonstrates that the electropolymerization of the phenothiazine monomer into a pre-formed multilayer containing MWCNT can be used for the controllable preparation of stable MWCNT/poly(phenothiazine) composites on electrode surfaces, which have the potential to provide a platform for electrochemical biosensors based on NAD~+-dependent dehydrogenase enzymes.
机译:通过将多壁碳纳米管(MWCNT)集成到电聚合的吩噻嗪染料中,开发了一种电化学传感平台,用于安培检测β-烟酰胺腺嘌呤二核苷酸(NADH)。将吩噻嗪衍生物Azure B,Azure A和硫氨酸进行电氧化聚合成MWCNT /聚二烯丙基二甲基氯化铵(PDDA)多层复合材料,该复合材料由静电层法制备玻璃碳电极上的多层组件。本研究中使用的三种吩噻嗪单体表现出相似的电化学行为。 Azure B被广泛用作调查的模型单体。电化学技术和扫描电子显微镜用于证明形成了多孔复合材料,并且碳纳米管充当了纳米级的主链,用于负载聚合物吩噻嗪。随着层数的增加,NADH氧化的电催化电流增加,这表明可接触到NADH的聚吩噻嗪的增加以及复合物中涂覆有吩噻嗪的MWCNT的三维排列有助于电子和NADH转移。在最佳条件下,使用{MWCNT / PDDA} 8-poly(Azure B)复合改性玻璃碳,在0.1 V电位(相对于Ag / AgCl)下,NADH的检出限降至7.0 x 10〜(-8)M电极,响应时间约为5 s。这项工作表明,吩噻嗪单体电聚合成包含MWCNT的预成型多层膜可用于可控地在电极表面制备稳定的MWCNT /聚(吩噻嗪)复合材料,这有可能为基于电化学传感器的生物传感器提供平台NAD〜+依赖的脱氢酶。

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