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一种基于二维纳米层 Co(OH) 剥离石墨相氮化碳的新型双功能纳米结构作为高性能无酶葡萄糖传感器:阻抗和安培检测。

A new bifunctional nanostructure based on Two-Dimensional nanolayered of Co(OH) exfoliated graphitic carbon nitride as a high performance enzyme-less glucose sensor: Impedimetric and amperometric detection.

机构信息

Department of Chemistry, College of Sciences, Shiraz University, Shiraz, 71456, Iran.

Department of Chemistry, College of Sciences, Shiraz University, Shiraz, 71456, Iran.

出版信息

Anal Chim Acta. 2018 Nov 30;1034:63-73. doi: 10.1016/j.aca.2018.06.052. Epub 2018 Jul 11.

DOI:10.1016/j.aca.2018.06.052
PMID:30193641
Abstract

A novel non-enzymatic glucose sensor was constructed based on the nanolayered Co(OH) deposited on polymeric graphitic carbon nitride (Co(OH)-g-CN) via chemical bath deposition. The two-dimensional nanocomposite was used to modify a carbon paste electrode and its electrochemical performance of electrode was carefully evaluated. The electrochemical oxidation of glucose at modified electrode was studied by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) in 0.2 M KOH. It revealed a remarkable electrocatalytic behavior and noticeably synergistic effect as a result of decent exfoliation of graphitic carbon nitride in the presence of Co(OH). The amperometric response achieved by the modified electrode showed two calibration ranges with an excellent selectivity. A single-frequency impedance method was applied for glucose determination as an alternative to conventional EIS methods. The developed sensor represents a high sensitivity, wide concentration range (25 μM - 420.0 mM by impedimetry and 6.6-9800 μM by amperometry), and high reproducibility. The modified electrode showed a good selectivity for glucose over potentially interfering materials such as dopamine, ascorbic acid, urea, and uric acid. Finally, the Co(OH)-g-CN-CPE was utilized for quantification of glucose in blood serum samples.

摘要

一种新型的非酶葡萄糖传感器是基于通过化学浴沉积在聚合石墨相氮化碳(Co(OH)-g-CN)上沉积的纳米层 Co(OH) 构建的。该二维纳米复合材料用于修饰碳糊电极,并对电极的电化学性能进行了仔细评估。在 0.2 M KOH 中,通过循环伏安法(CV)和电化学阻抗谱(EIS)研究了修饰电极上葡萄糖的电化学氧化。结果表明,由于 Co(OH) 的存在,石墨相氮化碳的良好剥离具有显著的电催化行为和协同作用。修饰电极的安培响应显示出两个校准范围,具有出色的选择性。单频阻抗法被应用于葡萄糖的测定,作为传统的 EIS 方法的替代方法。所开发的传感器具有高灵敏度、宽浓度范围(通过阻抗法为 25 μM - 420.0 mM,通过安培法为 6.6-9800 μM)和高重现性。修饰电极对葡萄糖具有良好的选择性,对多巴胺、抗坏血酸、尿素和尿酸等潜在干扰物质具有良好的选择性。最后,Co(OH)-g-CN-CPE 用于血清样品中葡萄糖的定量。

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