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基于火花放电铜镍合金修饰的石墨印刷电极的葡萄糖传感。

Glucose sensing on graphite screen-printed electrode modified by sparking of copper nickel alloys.

机构信息

Department of Analytical Chemistry, Palacky University, 771 46 Olomouc, Czech Republic.

Department of Materials Science and Engineering, University of Ioannina, Ioannina 451 10, Greece.

出版信息

Talanta. 2017 Apr 1;165:466-473. doi: 10.1016/j.talanta.2016.12.064. Epub 2016 Dec 24.

Abstract

Electric spark discharge was employed as a green, fast and extremely facile method to modify disposable graphite screen-printed electrodes (SPEs) with copper, nickel and mixed copper/nickel nanoparticles (NPs) in order to be used as nonenzymatic glucose sensors. Direct SPEs-to-metal (copper, nickel or copper/nickel alloys with 25/75, 50/50 and 75/25wt% compositions) sparking at 1.2kV was conducted in the absence of any solutions under ambient conditions. Morphological characterization of the sparked surfaces was performed by scanning electron microscopy, while the chemical composition of the sparked NPs was evaluated with energy dispersive X-ray spectroscopy and X-ray photoelectron spectroscopy. The performance of the various sparked SPEs towards the electro oxidation of glucose in alkaline media and the critical role of hydroxyl ions were evaluated with cyclic voltammetry and kinetic studies. Results indicated a mixed charge transfer- and hyroxyl ion transport-limited process. Best performing sensors fabricated by Cu/Ni 50/50wt% alloy showed linear response over the concentration range 2-400μM glucose and they were successfully applied to the amperometric determination of glucose in blood. The detection limit (S/N 3) and the relative standard deviation of the method were 0.6µM and <6% (n=5, 2µM glucose), respectively. Newly devised sparked Cu/Ni graphite SPEs enable glucose sensing with distinct advantages over existing glucose chemical sensors in terms of cost, fabrication simplicity, disposability, and adaptation of green methods in sensor's development.

摘要

采用电火花放电的方法,在环境条件下,无需任何溶液,直接对一次性石墨丝网印刷电极(SPE)进行火花处理,在 SPE 表面原位修饰铜、镍和混合铜/镍纳米粒子(NPs),将其作为非酶葡萄糖传感器。通过扫描电子显微镜对火花表面的形貌进行了表征,同时通过能量色散 X 射线光谱和 X 射线光电子能谱评估了火花 NPs 的化学组成。通过循环伏安法和动力学研究评估了各种火花 SPE 在碱性介质中葡萄糖电氧化的性能以及羟基离子的关键作用。结果表明,该过程是一种混合的电子转移和羟基离子传输受限过程。由 Cu/Ni 50/50wt% 合金制成的性能最佳的传感器在 2-400μM 葡萄糖浓度范围内表现出线性响应,并且成功地应用于血液中葡萄糖的安培测定。该方法的检测限(S/N 3)和相对标准偏差分别为 0.6µM 和 <6%(n=5,2µM 葡萄糖)。新设计的火花 Cu/Ni 石墨 SPE 在成本、制造简单性、一次性使用、以及在传感器开发中采用绿色方法等方面,与现有的葡萄糖化学传感器相比,具有明显的葡萄糖传感优势。

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