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Quantifying the Product Distribution of a Chemical Reaction by H-1 NMR Spectroscopy: A Cooperative Learning Approach for the Undergraduate Organic Chemistry Laboratory

机译:通过H-1 NMR光谱量化化学反应的产品分布:本科有机化学实验室的合作学习方法

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摘要

This enhancement of a classic laboratory experiment investigates the kinetic and thermodynamic control of a reaction utilizing H-1 NMR spectroscopy instead of melting point analysis to determine the product distribution. In this experiment, semicarbazide is reacted with cyclohexanone and 2-furaldehyde under varying buffer and temperature conditions to yield semicarbazone derivative products. After 1H NMR analysis of the products, students compile the class data in a cooperative setting facilitated by graduate teaching assistants. As a result, students are able to analyze a larger data set in this cooperative learning environment in order to describe the product distribution of the reaction on the basis of trends as opposed to using a single data set. The application of H-1 NMR spectroscopy to determine the product distribution of the reaction introduces a modern approach to study a well-established example of the kinetic and thermodynamic control of a reaction.
机译:这种经典实验室实验的增强研究了利用H-1 NMR光谱的反应的动力动力学控制,而不是熔点分析来确定产品分布。 在该实验中,氨基脲与环己酮和2-呋喃醛在不同的缓冲液和温度条件下反应,得到氨基脲衍生物产物。 在本产品1H核磁共振分析后,学生在研究生教学助理促进的合作设置中编制课程数据。 因此,学生能够分析在该合作学习环境中的更大数据集,以便根据使用单个数据集的趋势来描述反应的产品分布。 H-1 NMR光谱法确定反应的产品分布引入了一种研究一种现代方法,研究了反应的动力学和热力学控制的熟练和热力学控制。

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