首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Study on the resonance Rayleigh scattering, second-order scattering and frequency doubling scattering spectra of the interactions of palladium(II)-ceftriaxone chelate with anionic surfactants and their analytical applications
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Study on the resonance Rayleigh scattering, second-order scattering and frequency doubling scattering spectra of the interactions of palladium(II)-ceftriaxone chelate with anionic surfactants and their analytical applications

机译:钯(II)-头孢曲松螯合物与阴离子表面活性剂相互作用的共振瑞利散射,二阶散射和倍频散射光谱研究及其分析应用

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In pH 1.8-2.9 Britton-Robinson (BR) buffer medium, ceftriaxone (CTRX) can react with palladium(II) (Pd(II)) to form 1:2 cationic chelate, which can further react with anionic surfactants (AS) such as sodium lauryl sulfonate (SLS), sodium dodecyl sulfate (SDS) and sodium dodecylbenzene sulfonate (SDBS) to form 1:3 ion-association complexes. As a result, the resonance Rayleigh scattering (RRS), second-order scattering (SOS) and frequency doubling scattering (FDS) were enhanced greatly. The maximum RRS, SOS and FDS wavelengths of three ion-association complexes were located at 335 nm, 560 nm and 390 nm, respectively. The increments of scattering intensity (Delta I) were directly proportional to the concentrations of CTRX in certain ranges. The detection limits (3 sigma) of CTRX for SLS, SDBS and SDS systems were 1.8 ng ml(-1), 2.3 ng ml(-1) and 2.3 ng ml(-1) (RRS method), 4.9 ng ml(-1), 7.4 ng ml(-1) and 4.7 ng ml(-1) (SOS method) and 6.8 ng ml(-1), 7.3 ng ml(-1) and 9.1 ng ml(-1) (FDS method), separately. The sensitivity of RRS method was higher than those of SOS and FDS methods. The optimum conditions of RRS method and the influence factors were investigated, and the composition of ion-association complexes and the reaction mechanism were discussed also. The effects of foreign substances were tested and it showed that the method has a good selectivity. Based on the ion-association reaction, the sensitive, simple and rapid methods for the determination of CTRX have been developed. (C) 2007 Elsevier B.V. All rights reserved.
机译:在pH 1.8-2.9 Britton-Robinson(BR)缓冲液中,头孢曲松(CTRX)可以与钯(II)(Pd(II))反应形成1:2阳离子螯合物,它可以进一步与阴离子表面活性剂(AS)反应以十二烷基磺酸钠(SLS),十二烷基硫酸钠(SDS)和十二烷基苯磺酸钠(SDBS)的形式形成1:3离子缔合配合物。结果,共振瑞利散射(RRS),二阶散射(SOS)和倍频散射(FDS)大大提高了。三种离子缔合配合物的最大RRS,SOS和FDS波长分别位于335 nm,560 nm和390 nm。散射强度的增量(增量I)与特定范围内CTRX的浓度成正比。 SLS,SDBS和SDS系统CTRX的检出限(3 sigma)为1.8 ng ml(-1),2.3 ng ml(-1)和2.3 ng ml(-1)(RRS方法),4.9 ng ml(- 1),7.4 ng ml(-1)和4.7 ng ml(-1)(SOS方法)和6.8 ng ml(-1),7.3 ng ml(-1)和9.1 ng ml(-1)(FDS方法) ,分别。 RRS方法的灵敏度高于SOS和FDS方法。研究了RRS法的最佳条件和影响因素,讨论了离子缔合配合物的组成和反应机理。测试了异物的影响,结果表明该方法具有良好的选择性。基于离子缔合反应,开发了灵敏,简单,快速的CTRX测定方法。 (C)2007 Elsevier B.V.保留所有权利。

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