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首页> 外文期刊>Instrumentation science & technology: Designs and applications for chemistry, biotechnology, and environmental science >Electrochemical determination of urea using a gold nanoparticle-copolymer coated-enzyme modified gold electrode
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Electrochemical determination of urea using a gold nanoparticle-copolymer coated-enzyme modified gold electrode

机译:用金纳米颗粒共聚物涂布酶改性金电极电化学测定尿素

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摘要

A new amperometric urea biosensor based on gold nanoparticle embedded poly(propylene-co-imidazole) was developed for the determination of urea. The urease adsorbed on the polymeric film catalyzed the hydrolysis of urea to ammonium and bicarbonate ions and the ammonium was then electrooxidized on the gold electrode with the aid of gold nanoparticles at +0.2 V versus Ag/AgCl using differential pulse voltammetry. The biosensor provided a linear current response to urea concentration from 0.1 to 30 mM, a detection limit of 36 μM, a relative standard deviation of 2.43% (n = 18), and excellent storage stability, as the current decrease was only 3% after 75 days. The operation of the biosensor was evaluated by the analysis of municipal sewage wastewater collected from the inlet pipe of the treatment plant of Zonguldak City in Turkey. The effects of possible interferants were also characterized.
机译:基于金纳米颗粒包埋的聚(丙烯-Co-咪唑)的新型尿素尿素生物传感器用于测定尿素。 吸附在聚合物膜上的脲糖催化尿素对铵和碳酸氢盐离子的水解,然后在使用差分脉冲伏安的+0.2V与Ag / AgCl的金纳米颗粒的借助于金纳米颗粒在金电极上电化氧化。 生物传感器提供从0.1至30mm的尿素浓度的线性电流响应,检测限为36μm,相对标准偏差为2.43%(n = 18),并且优异的储存稳定性,随着电流降低仅为3% 75天。 通过从土耳其Zonguldak市的治疗厂的入口管道收集的市政污水废水分析来评估生物传感器的操作。 可能的干扰剂的影响也表征。

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