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Selective sensing of Fe2+ ions in aqueous solution based on fluorescence quenching of SDS capped rubrene nanoparticles: application in pharmaceutical formulation

机译:基于SDS封端氧丙烯纳米粒子的荧光猝灭的水溶液中Fe2 +离子的选择性感测:在药物制剂中的应用

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摘要

The nanoparticles of highly fluorescent rubrene prepared by reprecipitation method using sodium dodecyl sulphate (SDS) exhibited narrower particle size distribution when examined by the Dynamic Light Scattering (DLS) technique. The average particle size obtained is 87.2 nm and the zeta potential -13.8 mV given by a zetasizer indicated that the rubrene nanoparticles (RUBNPs) entrapped in SDS surfactant are negatively charged therefore changing the photo absorption and emission properties of the aqueous suspension of nanoparticles. The red shifted UV-photo absorption band of RUBNPs in comparison with the absorption band of rubrene in tetrahydrofuran (THF) solution is because of J-type aggregates in the aqueous suspension of nanoparticles, which also results in Aggregation Induced Enhanced Emission (AIEE) at lambda(max) = 564 nm. The presence of Fe2+ in the aqueous suspension of RUBNPs showed quenching of fluorescence at 564 nm and the quenching results fit into a conventional Stern-Volmer relation in the concentration range of 0-80 mu g mL(-1) of Fe2+ ions solution with a good linear relationship. The possible mechanism of fluorescence quenching of RUBNPs is explained by considering the adsorption of the Fe2+ cation electrostatically on the negatively charged surface of the nanoparticle generated by SDS capping. The proposed sensing method of RUBNPs for selective detection of Fe2+ ion is successfully applied for the quantification of Fe2+ from pharmaceutical tablets.
机译:当通过动态光散射(DLS)技术检查时,通过使用十二烷基硫酸钠(SDS)的再沉淀法制备的高荧光卷曲纳米颗粒表现出较窄的粒度分布。获得的平均粒度为87.2nm,Zetasizer给出的Zeta电位-13.8mV表明,捕获在SDS表面活性剂中的氧丙烯纳米颗粒(摩擦)被带负电,因此改变了纳米颗粒的水性悬浮液的光吸收和排放性能。与四氢呋喃(THF)溶液中氧丙烯的吸收带相比,RUBNP的红色偏移紫外线吸收带是因为纳米颗粒的水性悬浮液中的J型聚集体,其也导致聚集诱导的增强发射(AIEE) lambda(max)= 564 nm。摩擦水溶液中的Fe2 +的存在显示在564nm处的荧光猝灭,并且淬火结果适合于0-80μg(-1)Fe2 +离子溶液的浓度范围内的常规船尾体内关系。良好的线性关系。通过考虑通过静电在SDS封端产生的纳米颗粒的带负电表面上静电吸附Fe2 +阳离子的吸附来解释RubnPS的可能机制。用于选择性检测Fe2 +离子的rubnps的所提出的rubnps的传感方法被成功地从药物片中定量Fe2 +的定量。

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  • 来源
    《Analytical methods》 |2015年第18期|共10页
  • 作者单位

    Shivaji Univ Dept Chem Fluorescence Spect Lab Kolhapur 416004 Maharashtra India;

    Shivaji Univ Dept Chem Fluorescence Spect Lab Kolhapur 416004 Maharashtra India;

    Shivaji Univ Dept Chem Fluorescence Spect Lab Kolhapur 416004 Maharashtra India;

    Shivaji Univ Dept Chem Fluorescence Spect Lab Kolhapur 416004 Maharashtra India;

    Shivaji Univ Dept Chem Fluorescence Spect Lab Kolhapur 416004 Maharashtra India;

    Shivaji Univ Dept Chem Fluorescence Spect Lab Kolhapur 416004 Maharashtra India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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