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首页> 外文期刊>RSC Advances >Polyelectrolyte stabilized bi-metallic Au/Ag nanoclusters modified electrode for nitric oxide detection
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Polyelectrolyte stabilized bi-metallic Au/Ag nanoclusters modified electrode for nitric oxide detection

机译:一氧化氮检测用聚电解质稳定的双金属Au / Ag纳米簇修饰电极

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摘要

In situ synthesis of bi-metallic Au/Ag nanoclusters (NCs) embedded in poly(acrylamide-co-diallyldimethylammonium chloride) (PADA) matrix and its application towards the detection of nitric oxide (NO) in nanomolar concentration range are reported. The cationic PADA matrix was used as stabilizer and support material for the preparation of bi-metallic Au/Ag NCs. The electrocatalytic oxidation and electrochemical sensing of NO were studied using the bi-metallic Au/Ag NCs modified electrodes. The modified electrode exhibited synergistic electrocatalytic activity, sensitivity and selectivity towards NO detection when compared to the mono-metallic Au and Ag nanostructures (NSs) modified electrodes. The present bi-metallic Au/Ag NCs modified electrode showed a sensitivity of 3.77 nA nM(-1), a lowest experimental detection limit of 10 nM with S/N = similar to 4.9, a fast response time (1 s) and a wide linear range of 10 nM to 0.9 mM towards the detection of NO. Selective sensing of NO was studied in the presence of NO3-, CO2, NH3 and other common physiological interferences.
机译:报道了嵌在聚(丙烯酰胺-共二烯丙基二甲基氯化铵)(PADA)基质中的双金属Au / Ag纳米簇的原位合成及其在纳摩尔浓度范围内对一氧化氮(NO)的检测中的应用。阳离子PADA基质用作制备双金属Au / Ag NCs的稳定剂和载体材料。利用双金属Au / Ag NCs修饰电极研究了NO的电催化氧化和电化学传感。与单金属Au和Ag纳米结构(NSs)修饰电极相比,修饰电极对NO检测具有协同电催化活性,灵敏度和选择性。本双金属Au / Ag NCs修饰电极的灵敏度为3.77 nA nM(-1),最低实验检测限为10 nM,S / N = 4.9,响应时间短(1 s),可以检测到10 nM至0.9 mM的宽线性范围。在存在NO3-,CO2,NH3和其他常见生理干扰的条件下研究了NO的选择性传感。

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