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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Concentration determination of methyl magnesium chloride and other Grignard reagents by potentiometric titration with in-line characterization of reaction species by FTIR spectroscopy.
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Concentration determination of methyl magnesium chloride and other Grignard reagents by potentiometric titration with in-line characterization of reaction species by FTIR spectroscopy.

机译:通过电位滴定和FTIR光谱在线表征反应物的浓度来测定甲基氯化镁和其他格氏试剂的浓度。

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摘要

A potentiometric titration method for methyl magnesium chloride and other Grignard reagents based on the reaction with 2-butanol in THF has been developed and validated. The method employs a commercially available platinum electrode, using an electrolyte compatible with non-aqueous solvents. Well-defined titration curves were obtained, along with excellent method precision. The endpoint was precisely determined based on the first derivative of the titration curve. Different solvents such as THF, diethyl ether and methylene chloride provided similar results with regard to sharpness of the endpoint and method precision. The method was applied to a wide array of Grignard reagents including methyl magnesium bromide, ethyl magnesium chloride, propyl magnesium chloride, vinyl magnesium chloride, phenyl magnesium chloride, and benzyl magnesium chloride with similar precision and accuracy. Application of in-line FTIR was demonstrated for in situ monitoring of the titration reaction, allowing characterization of the reaction species. An authentic spectrum of the MeMgCl-THF complex was obtained using spectral subtraction and the vibrational absorbance bands were identified. FTIR also provided an alternative for detecting the titration endpoint, and the titration results so obtained, provided a cross-validation of the accuracy of the potentiometric titration.
机译:基于与2-丁醇在THF中的反应,开发了一种甲基氯化镁和其他格氏试剂的电位滴定方法。该方法使用可商购的铂电极,其使用与非水溶剂相容的电解质。获得了明确的滴定曲线,并具有出色的方法精度。根据滴定曲线的一阶导数精确确定终点。在终点的清晰度和方法精度方面,不同的溶剂(如THF,乙醚和二氯甲烷)提供了相似的结果。该方法以相似的精度和准确度应用于各种各样的格氏试剂,包括甲基溴化镁,乙基镁氯化物,丙基镁氯化物,乙烯基镁氯化物,苯基镁氯化物和苄基氯化镁。已证明在线FTIR的应用可用于滴定反应的原位监测,从而表征反应物种。使用光谱减法获得了MeMgCl-THF配合物的真实光谱,并确定了振动吸收带。 FTIR还提供了另一种检测滴定终点的方法,如此获得的滴定结果可对电位滴定精度进行交叉验证。

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