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首页> 外文期刊>Journal of Chemical Education >Nucleophilic Substitution Reactions Using Phosphine Nucleophiles: An Introduction to Phosphorus-31 NMR
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Nucleophilic Substitution Reactions Using Phosphine Nucleophiles: An Introduction to Phosphorus-31 NMR

机译:使用膦亲核剂的亲核取代反应:Phosphorus 31 NMR的简介

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Nuclear magnetic resonance (NMR) spectroscopy is commonly used in modern synthetic chemistry to monitor the conversion of reactants to products. Since instruction in the use of NMR spectroscopy typically does not occur until after the introduction of nucleophilic substitution reactions, organic chemistry students are not able to take advantage of this technique to measure and quantify important concepts such as relative electrophile and nucleophile reactivity. A phosphorus-31 (P-31) NMR spectroscopy experiment is reported that allows undergraduate students to monitor product formation for a number of different alkyl halide electrophiles and phosphorus nucleophiles. In this experiment, students are able to use reactant-to-product ratios obtained by simple P-31 NMR spectroscopy to explore the relative reactivities of these compounds. This exercise Serves as an introduction to both NMR spectroscopy and the specific advantages of heteronuclear NMR spectroscopy.
机译:核磁共振(NMR)光谱通常用于现代合成化学中,以监测反应物向产物的转化。由于通常在引入亲核取代反应后才会出现使用NMR光谱的指导,因此有机化学专业的学生无法利用该技术来测量和量化重要概念,例如相对亲电子和亲核反应性。据报道,磷31(P-31)NMR光谱实验使大学生可以监视许多不同的卤代烷亲电试剂和磷亲核试剂的产物形成。在该实验中,学生能够使用通过简单的P-31 NMR光谱获得的反应物与产物的比率,探索这些化合物的相对反应活性。此练习可作为NMR光谱学和异核NMR光谱学的特定优势的介绍。

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