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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Highly reproducible, simple and selective analytical method for extractive UV-visible spectrophotometric determination of ruthenium (III): Analysis of catalyst, fissium alloy and sequential separation
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Highly reproducible, simple and selective analytical method for extractive UV-visible spectrophotometric determination of ruthenium (III): Analysis of catalyst, fissium alloy and sequential separation

机译:钌(III)钌(III)的高度可再现,简单且选择性的分析方法:钌(III)的测定:催化剂,裂解合金和顺序分离分析

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摘要

An easy and selective method has been developed for the extractive spectrophotometric determination of ruthenium(III) with 4-(4'-flurobenzylideneimino)-3-methyl-5-mercapto-1,2,4-triazole (FBIMMT) as a chelating reagent. The basis of the method is the formation of stable complex of 'soft base' FBIMMT with 'soft acid' ruthenium(M). The reagent FBIMMT in n-butanol easily forms extractable yellow coloured complex with ruthenium(III) in acetate buffer of pH 4.8. The absorbance of [Ru(III)-FBIMMT] complex is measured at 394 nm against the reagent blank. Good linearity range of concentration up to 27.0 mu g mL(-1) of ruthenium(III) is attained with correlation coefficient R-2 = 0.998. The optimum concentration range is 6 to 27.0 mu g mL(-1) which is deduced by Ringbom's plot. The apparent molar absorptivity found to be 2.75 x 10(3) L mol(-1) cm(-1). Some additional characteristics such as limit of detection (LOD = 0.48 mu g mL(-1)), limit of quantification (LOQ = 1.19 mu g mL(-1)), and Sandell's sensitivity (SS = of 0.0367 mu g cm(-2)) arc also estimated. The composition of [Ru (III)-FBIMMT1 complex has been established from Job's continuous variation method, mole ratio method, and log-log plot method. The specificity towards ruthenium(III) is well studied and appropriate masking agents are applied wherever required to boost it. The intra-day and inter-day precision values are found to be brilliant with % relative standard deviation of 0.52 and 0.68 respectively with % accuracy within the range of 99.00-100. The method is effectively used for determination of ruthenium(III) from water samples, binary and ternary synthetic mixtures, fissium alloy samples and catalyst materials. A scheme for sequential group separation of ruthenium(III), palladium(II) and osmium (VIII) has also been developed. The reproducible results of the present method confirm that the method has a good potential for quantitative determination of ruthenium(III) from various matrices. (C) 2020 Elsevier B.V. All rights reserved.
机译:已经开发了一种易于选择的方法,用于用4-(4'-氟苄基吲哚)-3-甲基-5-巯基-1,2,4-三唑(FBIMMT)作为螯合试剂的钌(III)的钌(III)的萃取分光光度法测定。该方法的基础是形成“软碱”FBIMMT与“软酸”钌(M)的形成。正丁醇中的试剂FBIMMT在乙酸pH4.8的乙酸钌(III)中易于形成可萃取的黄色复合物。 [Ru(III)-FBIMMT]复合物的吸光度在394nm抵抗试剂坯料。良好的线性度浓度范围高达27.0μgml(-1)钌(III),相关系数R-2 = 0.998获得。最佳浓度范围为6至27.0μg(-1),由RingBom的绘图推导出来。发现表观摩尔吸收率至2.75×10(3)℃(-1)cm(-1)。一些额外的特性,如检测限(LOD =0.48μg(-1)),量化限制(LOQ =1.19μgml(-1)),以及Sandell的敏感性(SS = 0.0367 mu g cm( - 2))电弧也估计。 [Ru(III)-FBIMMT1复合物的组成是从作业的连续变化方法,摩尔比例和对数绘图方法建立的。对钌(III)的特异性进行了良好的研究,并且在需要促进它的情况下施加适当的掩蔽剂。发现史上的日益和日间精确值在0.52和0.68的%相对标准偏差分别具有0.52和0.68的%,%精度在99.00-100的范围内。该方法有效地用于测定水样,二元和三元合成混合物,裂缝合金样品和催化剂材料的钌(III)。还开发了钌(III),钯(II)和锇(VIII)的顺序组分离方案。本方法的可再现结果证实了该方法具有良好的定量测定来自各种基质的钌(III)的潜力。 (c)2020 Elsevier B.v.保留所有权利。

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