Titrimetric and Spectrophotometric Determination of Some Thiadiazole Derivatives by Using Amplification Reactions

M. Barbooti, Ridha I. Al-Bayati, A. A. Hussain
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引用次数: 0

Abstract

The principle of using amplification reactions of iodine was employed in this paper to estimate the thiadiazole derivatives on basis of their reactions with iodine I chloroform, removal of the excess iodine and determination of the resulting iodide, after oxidation to iodate. The overall reaction gave an amplification of the iodide that is (12) times larger for the compounds: 2-amino-5-mercapto-1,3,4-thiadiazole (I); 2,5-dimercapto-1,3,4-thiadiaole (II) and 2,5-diamino-1,3,4-thiadiazole (III) and (36) times for 2,5-dihydrazino-1,3,4-thiadiazole (IV) and (6) times for 5-mercapto-2[(3[5’-nitro-2-’furyl]·methylene)amino]-1,3,4-thiadiazole (V) and 5-mercapto-2[(3[5’-nitro-2-’furyl]-prop-2-enylidene)amino]-1,3,4-thiadiazole (VI). By titration, 1-mL of standard thiosulfate solution was found equivalent to 0.108 mg of (I); 0.126 mg of (II), 0.16 mg of (III), 0.041 mg of (IV), 0.40 mg of (V) and 0.435 mg of (VI). Using the spectrophotometric detection for the amplification reaction gave high absorbance values at 605 nm for the blue starch-iodine complex. Beer’s law was obeyed up to 4.0 ppm for compounds (I and II); 6.0 ppm for compounds (III, IV and VI) and 5.0 ppm for compound (V). The mechanism of the reactions was proposed and the analytical parameters were evaluated for both methods. The method was applied for synthetic samples of industrial importance. The recovery was comparable while the sensitivity and detection limits were better for the spectrophotometric detection.
放大反应滴定光度法测定某些噻二唑衍生物
本文利用碘的扩增反应原理,根据噻二唑衍生物与碘-Ⅰ-三氯甲烷的反应,除去过量的碘,并测定氧化成碘酸盐后产生的碘,对噻二唑的衍生物进行了估算。整个反应得到的碘化物扩增倍数是化合物的(12)倍:2-氨基-5-巯基-1,3,4-噻二唑(I);2,5-二巯基-1,3,4-噻二唑(II)和2,5-二氨基-1,3,4-噻唑(III。通过滴定,发现1mL标准硫代硫酸盐溶液相当于0.108mg(I);0.126 mg(II)、0.16 mg(III)、0.041 mg(IV)、0.40 mg(V)和0.435 mg(VI)。使用用于扩增反应的分光光度检测给出了蓝色淀粉-碘络合物在605nm处的高吸光度值。化合物(I和II)在4.0ppm以下符合比尔定律;化合物(III、IV和VI)为6.0ppm和化合物(V)为5.0ppm。提出了反应机理,并对两种方法的分析参数进行了评价。该方法已应用于具有工业重要性的合成样品。回收率相当,而分光光度法检测的灵敏度和检测限更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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