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Copper Oxide Chitosan Nanocomposite: Characterization and Application in Non-Enzymatic Hydrogen Peroxide Sensing

机译:氧化铜壳聚糖纳米复合材料:表征和在非酶过氧化氢传感中的应用

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摘要

Electrochemical dissolution of metallic copper into slightly acidic aqueous solutions of chitosan yields a clear and stable dispersion of Copper Oxide nanoparticles into the organic polymer host. The electrochemically synthesized chitosan:CuOx nanocomposite is characterized by means of spectrophotometry, frequency domain electrical measurements and morphological analysis. Solid state electrochemical cells having pure chitosan as the electrolyte and using chitosan:CuOx as the electrode, are developed and characterized by means of electrical measurements performed in the ±1 V voltage window. The current-voltage loops of the cells, measured in deionized water, are found to reversibly change in response to hydrogen peroxide added to the water in 0.2 μM subsequent steps. Such changes, clearly distinguishable from changes recorded in response to other analytes, can be exploited in order to develop a hydrogen peroxide sensor able to work without the need for any supporting electrolyte.
机译:将金属铜电化学溶解到壳聚糖的弱酸性水溶液中,可将氧化铜纳米颗粒清晰稳定地分散到有机聚合物主体中。电化学合成的壳聚糖:CuOx纳米复合材料的特征在于分光光度法,频域电学测量和形态分析。通过在±1 V电压窗口内进行电测量,开发并表征了具有纯壳聚糖作为电解质并使用壳聚糖:CuOx作为电极的固态电化学电池。发现在去离子水中测得的电池电流-电压回路响应于在随后的0.2μM步骤中添加到水中的过氧化氢而可逆地变化。可以利用这种明显不同于响应于其他分析物记录的变化的变化,以便开发一种无需任何辅助电解质即可工作的过氧化氢传感器。

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