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Determination of nitrite in tap waters based on fluorosurfactant-capped gold nanoparticles-enhanced chemiluminescence from carbonate and peroxynitrous acid

机译:含氟表面活性剂封端的金纳米颗粒增强的碳酸盐和过氧亚硝酸化学发光法测定自来水中的亚硝酸盐

摘要

Fluorosurfactant (FSN)-capped gold nanoparticles (GNPs), which exhibit higher stability at a wider pH range and high ionic strength, were utilized for investigating the chemiluminescence (CL) effect on the reaction between high concentration carbonate (similar to 0.3 M) and peroxynitrous acid. When the pH of the colloidal solution was 10.2 by dropwise addition of 0.05 M NaOH, FSN-capped GNPs offer an enhanced CL intensity. Based on the CL spectra, XPS spectra and the quenching effect of reactive oxygen species, a possible CL mechanism is proposed. The tolerance of FSN-capped GNPs towards salt concentrations (salt proofing effect) within a large pH range is an interesting feature, compared to the other previously reported work on nanoparticles CL systems. The CL intensity is proportional to the concentration of nitrite in the range from 0.1 to 100 mu M. The detection limit (S/N - 3) is 0.036 mu M and the relative standard deviation (RSD) for seven repeated measurements of 0.5 mu M nitrite was 2.4%. This method has been successfully applied to determine nitrite in tap waters with recoveries of 97-106%.
机译:氟表面活性剂(FSN)包覆的金纳米颗粒(GNP)在更宽的pH范围内表现出更高的稳定性,并具有较高的离子强度,用于研究化学发光(CL)对高浓度碳酸盐(约0.3 M)与碳酸根之间的反应的影响。过氧亚硝酸。当通过逐滴添加0.05 M NaOH的胶体溶液的pH为10.2时,FSN封端的GNP会提供增强的CL强度。基于CL光谱,XPS光谱和活性氧的猝灭效应,提出了可能的CL机理。与先前报道的其他有关纳米粒子CL系统的研究相比,FSN封端的GNP对较大pH范围内的盐浓度(防盐效果)的耐受性是一个有趣的功能。 CL强度与亚硝酸盐的浓度成正比,范围为0.1至100μM。七次重复测量0.5μM时,检测极限(S / N-3)为0.036μM,相对标准偏差(RSD)。亚硝酸盐为2.4%。该方法已成功应用于自来水中亚硝酸盐的测定,回收率为97-106%。

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