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Sensory properties of copper microstructures deposited from water-based solution upon laser irradiation at 532 nm

机译:532 nm激光辐照从水基溶液沉积的铜微结构的感官特性

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The simple and cheap method for fabrication of micro-sized electrochemical electrodes was proposed. The porous copper microstructures synthesized by laser-induced metal deposition technique were used as an indicator electrode, whereas a bulk poly-crystalline copper with similar geometric parameters was used as an etalon electrode. The electrochemical properties of these electrodes were studied by cyclic voltammetry and impedance spectroscopy. The surface of the deposited copper structures was investigated by X-ray photoelectron spectroscopy and atomic force microscopy. An analytical response of the fabricated copper electrode is 15 times higher than those observed for a pure bulk copper. A study of sensory characteristics for hydrogen peroxide and D-glucose detection showed that the value of Faraday current at the fabricated copper electrode is 2-2.5 orders of magnitude higher than for etalon one.
机译:提出了一种简单而便宜的制造微型电化学电极的方法。通过激光诱导金属沉积技术合成的多孔铜微结构被用作指示电极,而具有相似几何参数的块状多晶铜被用作标准具电极。通过循环伏安法和阻抗谱研究了这些电极的电化学性质。通过X射线光电子能谱和原子力显微镜研究沉积的铜结构的表面。制成的铜电极的分析响应比纯大块铜观察到的分析响应高15倍。对过氧化氢和D-葡萄糖检测的感官特性的研究表明,所制得的铜电极上的法拉第电流值比标准具一个高2-2.5个数量级。

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