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Sols of Silver Nanoparticles as Analytical Reagents for the Determination of Active Chlorine in Water Samples by Spectrophotometry and Photometric Titration

机译:作为分析试剂的银纳米粒子的溶胶通过分光光度法和光度滴定测定水样中的活性氯

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摘要

Sols of silver nanoparticles surface-stabilized by cetyltrimethylammonium bromide or polyvinylpyrrolidone can be used for the determination of active chlorine in water samples. As analytes modeling active chlorine in water, we used freshly prepared sodium hypochlorite solutions. Because of the high values of standard electrode potentials of reduction half-reactions, active forms of chlorine can oxidize silver nanoparticles, exhibiting the effect of surface plazmon resonance with an absorption maximum near 400 nm. The absorption intensity of silver nanoparticles correlates with the concentration of sodium hypochlorite. This effect was used for the qualitative and quantitative determination of active chlorine in water samples. The quantitative characteristics of the described method were obtained for two versions of analysis, spectrophotometry and photometric titration. The calibration graphs for both versions were similar and linear in the range of sodium hypochlorite concentrations 0.1-2.5 mM.
机译:通过十六烷基三甲基溴化铵或聚乙烯吡咯烷酮表面稳定的银纳米粒子的溶胶可用于测定水样中的活性氯。作为分析物在水中建模活性氯,我们使用了新鲜制备的次氯酸钠溶液。由于缩减半反应的标准电极电位的高值,活性形式的氯可以氧化银纳米颗粒,表现出表面披蒙共振的影响,吸收最大值近400nm。银纳米粒子的吸收强度与次氯酸钠的浓度相关。这种效果用于水样中的活性氯的定性和定量测定。获得了两种版本的分析,分光光度法和光度滴定的方法的定量特征。两个版本的校准图在次氯酸钠浓度范围内相似和线性,0.1-2.5mm。

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