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首页> 外文期刊>Journal of Chemical Education >Visually following the hydrogenation of curcumin to tetrahydrocurcumin in a natural product experiment that enhances student understanding of nmr spectroscopy
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Visually following the hydrogenation of curcumin to tetrahydrocurcumin in a natural product experiment that enhances student understanding of nmr spectroscopy

机译:在天然产物实验中直观地观察姜黄素加氢为四氢姜黄素,可增强学生对核磁共振光谱的理解

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This laboratory experiment was developed to provide two safe and effective ways to instruct undergraduate organic chemistry students about the catalytic palladium hydrogenation reaction. Students hydrogenate curcumin either by refluxing it as a suspension in methanol with 10% Pd/C and a transfer hydrogenation chemical, such as cyclohexene, or by using a hydrogenation flow reactor, an H-Cube, a type of instrument that is rapidly becoming an industry standard. Students develop chromatography and spectroscopy skills by performing thin-layer chromatographic analysis, and if necessary, running a silica gel column on the crude material, followed by acquiring a proton NMR spectrum of the product. Approximately 101 undergraduate students performed this experiment, and the experiment's effectiveness was assessed by two methods: a qualitative postlab student self-assessment and identical quantitative pre-and postlab tests. The tests indicated that the students showed significant improvement in their understanding of NMR spectroscopy after performing the experiment.
机译:开发该实验室实验的目的是提供两种安全有效的方法,以指导有机化学本科学生进行催化钯加氢反应。学生可以通过将姜黄素以悬浮在甲醇中的悬浮液(含10%Pd / C)和转移氢化化学品(例如环己烯)的形式回流,或使用氢化流动反应器H-Cube(一种正在迅速成为一种工业标准。通过进行薄层色谱分析,并在必要时在粗物质上运行硅胶柱,然后获取产品的质子NMR光谱,学生可以开发色谱和光谱学技能。大约101名本科生进行了该实验,并通过两种方法评估了实验的有效性:定性的实验后学生自我评估以及相同的定量的实验前和实验后测试。测试表明,学生在完成实验后对NMR光谱的理解有了显着提高。

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