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Benchtop NMR Spectroscopy and Spectral Analysis of the cis- and trans-Stilbene Products of the Wittig Reaction

机译:基准型NMR光谱和Wittig反应的CIS-和反式斯蒂尔替斯产品的光谱分析

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摘要

Benchtop NMR spectrometers are now becoming more widely employed in university teaching laboratories. These low-field instruments are increasingly used in reaction monitoring and product purity applications. NMR spectra obtained using these spectrometers (40-80 MHz) tend to suffer from significant overlap of signals when compared to those obtained at 300-400 MHz or above, and therefore, some reactions may be less suited to analysis using such benchtop systems. While some reactions can be modified to make them more amenable to analysis on low-field benchtop spectrometers, the fact remains that many common undergraduate laboratory chemistry reactions remain as a stalwart of the university education system. Therefore, there is currently a major requirement for benchtop NMR analysis to improve in order to facilitate student understanding. Herein, it is demonstrated that a combination of spectral analysis and simulation at low-fields (40-80 MHz) allows the fine structure of second-order effects and overlapping spectra to be deduced, enabling an improved understanding of the low-field benchtop NMR technique within undergraduate student cohorts. The evolution of well-resolved and distinct multiplets at 400 MHz to complex, overlapping multiplets at 40-80 MHz also serves as a useful guide for laboratory demonstrators and academic staff when explaining the advantages of such benchtop systems. The Wittig reaction has been a standard reaction practical session in many university teaching laboratories since the 1980s, the products of which are a mixture of cis- and trans-stilbenes. This reaction serves as an ideal example of how benchtop NMR spectrometers and analysis can support chemistry teaching laboratories.
机译:Benchtop NMR光谱仪现在正越广泛地在大学教学实验室中使用。这些低场仪器越来越多地用于反应监测和产品纯度应用。使用这些光谱仪(40-80MHz)获得的NMR光谱倾向于在与在300-400MHz或以上获得的那些相比的信号重叠,因此,一些反应可能不太适合使用这种台式系统进行分析。虽然可以修改一些反应以使其更加适合于对低场工作区光谱仪进行分析,但许多常见的本科实验室化学反应仍然是大学教育系统的史迹纵火。因此,目前Benchtop NMR分析的主要要求是为了促进学生理解。在此,证明了低场(40-80MHz)的光谱分析和模拟的组合允许推导二阶效应和重叠光谱的精细结构,从而改善了对低场工作台NMR的理解本科生队列中的技术。在400 MHz至复杂的良好解决和不同多样性的演变,在40-80MHz的重叠的重叠中的重叠运输也是实验室示威者和学术人员的有用指南,当解释了这样的台式系统的优势。自20世纪80年代以来,Wittig反应是许多大学教学实验室中的标准反应实践会议,其产品是CIS-和反式斯蒂芬的混合物。该反应用作Benchtop NMR光谱仪和分析如何支持化学教学实验室的理想示例。

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