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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Resonance Rayleigh scattering, second-order scattering and frequency doubling scattering spectra for studying the interaction of erythrosine with Fe(phen)32+ and its analytical application
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Resonance Rayleigh scattering, second-order scattering and frequency doubling scattering spectra for studying the interaction of erythrosine with Fe(phen)32+ and its analytical application

机译:共振瑞利散射,二阶散射和倍频散射光谱研究赤藓红与Fe(phen)32+的相互作用及其分析应用

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摘要

In a weak alkaline Britton-Robinson buffer medium, erythrosine (Ery) can react with Fe(phen)32+ to form 1:1 ion-association complex, which will cause not only the changes of the absorption spectra, but also the remarkable enhancement of resonance Rayleigh scattering (RRS), second-order scattering (SOS) and frequency doubling scattering (FDS) spectra, and the appearance of new spectra of RRS, SOS and FDS. The maximum RRS, SOS and FDS wavelengths (λ_(ex)/λ_(em)) of the ion-association complex are located at 358/358 nm, 290/580 nm and 780/390 nm, respectively. The increments of scattering intensities (ΔI) are directly proportional to the concentration of Ery in a certain range. The detection limits for Ery are 0.028 μg mL~(-1) for RRS method, 0.068 μg mL~(-1) for SOS method and 0.11 μg mL~(-1) for FDS method, respectively. Among them, the RRS method has the highest sensitivity. Based on the above researches, a new highly sensitive and simple method for the determination of Ery has been developed. In this work, the spectral characteristics of absorption, RRS, SOS and FDS spectra, the optimum conditions of the reaction and influencing factors for the RRS, SOS and FDS intensities were investigated. In addition, the reaction mechanism was discussed.
机译:在弱碱性的Britton-Robinson缓冲介质中,赤藓红(Ery)可以与Fe(phen)32+反应形成1:1的离子缔合复合物,这不仅会引起吸收光谱的变化,而且还会引起显着的增强。共振瑞利散射(RRS),二阶散射(SOS)和倍频散射(FDS)的光谱,以及RRS,SOS和FDS的新光谱的出现。离子缔合复合物的最大RRS,SOS和FDS波长(λ_(ex)/λ_(em))分别位于358/358 nm,290/580 nm和780/390 nm。散射强度的增量(ΔI)在一定范围内与Ery的浓度成正比。 Ery的检出限分别为RRS方法0.028μgmL〜(-1),SOS方法0.068μgmL〜(-1)和FDS方法0.11μgmL〜(-1)。其中,RRS方法具有最高的灵敏度。基于上述研究,开发了一种新的高灵敏度,简便的Ery测定方法。在这项工作中,研究了吸收的光谱特性,RRS,SOS和FDS的光谱,反应的最佳条件以及RRS,SOS和FDS强度的影响因素。此外,讨论了反应机理。

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