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新型巴比妥酸盐与汞(II)的两相电位滴定法的优化。第二部分:实验评估。

Optimization of a novel two-phase potentiometric titration method of barbiturates with mercury (II). Part II: Experimental evaluation.

作者信息

Coenegracht P M, Metting H J, Doornbos D A

出版信息

Pharm Weekbl Sci. 1983 Oct 21;5(5):243-7. doi: 10.1007/BF02332952.

Abstract

A two-phase potentiometric titration procedure of barbiturates with mercury(II) was developed. The composition of the formed mercury-barbiturate complexes was elucidated by infrared spectrometry. In the new titration procedure the barbituric acid derivative is dissolved in an aqueous borate buffer. An organic phase consisting of chloroform and benzyl alcohol is added, and the vigorously stirred contents of the titration vessel are titrated by a mercury(II) nitrate solution. In the potentiometric determination of the end-point a rotating mercury electrode is used as an indicator electrode that also serves as an efficient stirrer. The two-phase procedure was compared with a one-phase mercurimetric potentiometric titration in borate buffer and with the potentiometric titration by sodium hydroxide in an ethanol-water solution. The proposed two-phase procedure is superior to both methods because lower concentrations of barbiturates (10(-3) - 10(-4) M) can be determined successfully. The one-phase procedure suffers from systematic errors, while the titration with sodium hydroxide is less precise at concentration levels of the barbiturates prevailing in content uniformity studies. By the two-phase procedure the direct titration of phenobarbital and mephobarbital in a dry mix of tablet excipients was possible with a relative standard deviation smaller than 1.5 percent.

摘要

开发了一种用汞(II)对巴比妥酸盐进行两相电位滴定的方法。通过红外光谱法阐明了所形成的汞 - 巴比妥酸盐络合物的组成。在新的滴定方法中,将巴比妥酸衍生物溶解在硼酸盐缓冲水溶液中。加入由氯仿和苄醇组成的有机相,然后用硝酸汞(II)溶液滴定剧烈搅拌的滴定容器中的内容物。在电位法测定终点时,使用旋转汞电极作为指示电极,该电极还用作高效搅拌器。将两相法与在硼酸盐缓冲液中的单相汞量电位滴定法以及在乙醇 - 水溶液中用氢氧化钠进行的电位滴定法进行了比较。所提出的两相法优于这两种方法,因为可以成功测定较低浓度的巴比妥酸盐(10^(-3) - 10^(-4) M)。单相法存在系统误差,而在含量均匀性研究中巴比妥酸盐的浓度水平下,用氢氧化钠滴定的精密度较低。通过两相法,可以在片剂辅料的干混物中直接滴定苯巴比妥和甲丙氨酯,相对标准偏差小于1.5%。

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