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Detection of NADH and ethanol based on catalytic activity of soluble carbon nanofiber with low overpotential

机译:基于低电位的可溶性碳纳米纤维的催化活性检测NADH和乙醇

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摘要

The excellent catalytic activity of a novel carbon nanomaterial, soluble carbon nanofiber (CNF) with good dispersion and wettability, to the oxidation of dihydronicotinamide adenine dinucleotide (NADH) was described for biosensing application. The edge plane sites and oxygen-rich groups presented on the CNF surface could be partially responsible for its electrocatalytic behavior, which induced a substantial decrease by 573 mV in the overpotential of NADH oxidation reaction (compared to a bare electrode). The CNF-coated electrode thus allowed highly sensitive amperometric detection of NADH with a low limit of detection (0.11 mu M), low applied potential (+0.06 V), and minimization of surface fouling. Such ability of CNF to promote the electron transfer between NADH and the electrode suggested a new, promising biocompatible platform for development of dehydrogenase-based amperometric biosensors. With alcohol dehydrogenase (ADH) as a model, the ADH/CNF-modified electrode could be constructed by a simple casting process. The proposed biosensor showed rapid and highly sensitive amperometric response to ethanol with acceptable preparation reproducibility and excellent stability.
机译:描述了一种新型的碳纳米材料,具有良好的分散性和润湿性的可溶性碳纳米纤维(CNF),对二氢烟碱酰胺腺嘌呤二核苷酸(NADH)的氧化具有优异的催化活性,可用于生物传感应用。 CNF表面上存在的边缘平面位点和富氧基团可能部分负责其电催化行为,从而导致NADH氧化反应的超电势(与裸电极相比)大幅降低573 mV。因此,使用CNF涂层的电极允许以低检测限(0.11μM),低施加电势(+0.06 V)进行高灵敏度的NADH安培检测,并使表面污染最小。 CNF具有促进NADH与电极之间电子转移的这种能力,为开发基于脱氢酶的电流型生物传感器提供了一个新的,有前途的生物相容性平台。以醇脱氢酶(ADH)为模型,可以通过简单的铸造工艺构建ADH / CNF修饰的电极。所提出的生物传感器显示出对乙醇的快速和高度灵敏的安培响应,具有可接受的制剂再现性和出色的稳定性。

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