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基于离子液体功能化石墨烯的电化学测定烟酰胺腺嘌呤二核苷酸(NADH)和乙醇。

Electrochemical determination of NADH and ethanol based on ionic liquid-functionalized graphene.

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, PR China.

出版信息

Biosens Bioelectron. 2010 Feb 15;25(6):1504-8. doi: 10.1016/j.bios.2009.11.009. Epub 2009 Nov 14.

DOI:10.1016/j.bios.2009.11.009
PMID:20007014
Abstract

It is firstly reported that low-potential NADH detection and biosensing for ethanol are achieved at an ionic liquid-functionalized graphene (IL-graphene) modified electrode. A substantial decrease (440 mV) in the overvoltage of the NADH oxidation was observed using IL-graphene/chitosan coating, with oxidation starting at ca. 0 V (vs. Ag|AgCl). And the NADH amperometric response at such a modified electrode is more stable (95.4% and 90% of the initial activity remaining after 10 min and 30 min at 1 mM NADH solution) than that at bare electrode (68% and 46%). Furthermore, the IL-graphene/chitosan-modified electrode exhibited a good linearity from 0.25 to 2 mM and high sensitivity of 37.43 microA mM(-1)cm(-2). The ability of IL-graphene to promote the electron transfer between NADH and the electrode exhibited a novel and promising biocompatible platform for development of dehydrogenase-based amperometric biosensors. With alcohol dehydrogenase (ADH) as a model, the ADH/IL-graphene/chitosan-modified electrode was constructed through a simple casting method. The resulting biosensor showed rapid and highly sensitive amperometric response to ethanol with a low detection limit (5 microM). Moreover, the proposed biosensor has been used to determine ethanol in real samples and the results were in good agreement with those certified by the supplier.

摘要

首次报道了在离子液体功能化石墨烯(IL-graphene)修饰电极上实现低电位NADH 检测和生物传感用于乙醇。使用 IL-graphene/壳聚糖涂层观察到 NADH 氧化的过电势显著降低(440 mV),氧化起始于约 0 V(相对于 Ag|AgCl)。并且,在这种修饰电极上的 NADH 安培响应更稳定(在 1 mM NADH 溶液中 10 分钟和 30 分钟后,初始活性分别保持 95.4%和 90%)比裸电极(分别保持 68%和 46%)。此外,IL-graphene/壳聚糖修饰电极在 0.25 至 2 mM 范围内表现出良好的线性关系和 37.43 microA mM(-1)cm(-2)的高灵敏度。IL-graphene 促进 NADH 与电极之间电子转移的能力展示了一种新颖而有前途的生物相容性平台,可用于开发基于脱氢酶的安培生物传感器。以醇脱氢酶(ADH)为模型,通过简单的浇铸法构建了 ADH/IL-graphene/壳聚糖修饰电极。所得生物传感器对乙醇具有快速且高度敏感的安培响应,检测限低(5 microM)。此外,该生物传感器已用于测定实际样品中的乙醇,结果与供应商提供的结果吻合良好。

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