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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Flow injection fluorimetric determination of chromium(VI) in electroplating baths by luminescence quenching of tris(2,2'-bipyridyl)ruthenium(II)
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Flow injection fluorimetric determination of chromium(VI) in electroplating baths by luminescence quenching of tris(2,2'-bipyridyl)ruthenium(II)

机译:三(2,2'-联吡啶基)钌(II)的荧光猝灭流动注射荧光法测定电镀液中的铬(VI)

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摘要

A sensitive and selective luminescence quenching method is developed and used for manual and flow injection analysis(FIA)of chromium(VI)by reaction with [Ru(bpy)_3]~(2+).The emission peak of ruthenium(II)at 595 nm is linearly decreased as a function of Cr(VI)concentration.This permits determination of chromium(VI)ion over the concentration range 0.1-20 mug ml~(-1)with a detection limit of 33 ng ml~(-1).The quenching process is due to an electron transfer from the luminescent [Ru(bpy)3]~(2+)complex ion to Cr(VI)resulting in the formation of the non-luminescent [Ru(bpy)_3]~(3+)complex ion.Selectivity for Cr(VI)over many anions and transition,alkali and alkaline earth metal cations is demonstrated.High concentration levels of sulphate,chloride,borate,acetate,phosphate,nitrate,cyanide,Pb~(2+),Zn~(2+),Hg~(2+),Cu~(2+),Cd~(2+),Ni~(2+)and Mn~(2+)ions are tolerated.The effects of solution pH and [Ru(bpy)3]~(2+)reagent concentration are examined and the reaction conditions are optimized.Validation of the method according to the quality assurance standards show suitability of the proposed method for use in the quality control assessment of Cr(VI)in complex matrices without prior treatment.The method is successfully applied to determine chromium(VI)in electroplating baths using flow injection analysis.Results with a mean standard deviation of ±0.6% are obtained which compare fairly well with data obtained using atomic absorption spectrometry.
机译:建立了一种灵敏的,选择性的荧光猝灭方法,通过与[Ru(bpy)_3]〜(2+)的反应用于铬(VI)的手动和流动注射分析(FIA)。钌(II)的发射峰595 nm随Cr(VI)浓度的增加而线性降低,从而可以在0.1-20毫升ml〜(-1)的浓度范围内测定铬(VI)离子,检出限为33 ng ml〜(-1) )。淬灭过程是由于电子从发光[Ru(bpy)3]〜(2+)络合物离子转移到Cr(VI)导致形成不发光的[Ru(bpy)_3]〜 (3+)络合离子。证明了在许多阴离子和过渡金属,碱金属和碱土金属阳离子上六价铬的选择性。高浓度的硫酸根,氯离子,硼酸根,乙酸根,磷酸根,硝酸根,氰根,Pb〜(2可以耐受+),Zn〜(2 +),Hg〜(2 +),Cu〜(2 +),Cd〜(2 +),Ni〜(2+)和Mn〜(2+)离子。考察了溶液pH值和[Ru(bpy)3]〜(2+)试剂浓度,优化了反应条件。该方法的质量保证标准表明,该方法适用于未经预先处理的复杂基质中Cr(VI)的质量控制评估。该方法成功地用于测定电镀液中的Cr(VI)流动注射分析:获得的平均标准偏差为±0.6%,与使用原子吸收光谱法获得的数据相当好。

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