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Developing Expertise in 1H NMR Spectral Interpretation

机译:开发1H NMR光谱解释中的专业知识

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Advancements in organic chemistry depend upon chemists’ ability to interpret NMR spectra, though research demonstrates that cultivating such proficiency requires years of graduate-level study. The organic chemistry community thus needs insight into how this expertise develops to expedite learning among its newest members. This study investigated undergraduate and doctoral chemistry students’ understanding and information processing during the interpretation of ~(1)H NMR spectra and complementary IR spectra. Eighteen undergraduate and seven doctoral chemistry students evaluated the outcome of a series of syntheses using spectra corresponding to the products. Eye movements were measured to identify differences in cognitive processes between undergraduate and doctoral participants, and interviews were conducted to elucidate the chemical assumptions that guided participants’ reasoning. Results suggest five areas of understanding are necessary for interpreting spectra, and progress in understanding corresponds to increasing knowledge of experimental and implicit chemical variables. Undergraduate participants exhibited uninformed bidirectional processing of all information, whereas doctoral participants exhibited informed unidirectional processing of relevant information. These findings imply the community can support novices’ development of expertise by cultivating relevant understanding and encouraging use of informed interpretation strategies, including preliminary evaluation of relevant variables, prediction of expected spectral features, and search for complementary data across spectra.
机译:有机化学的进步取决于化学家解释核磁共振谱的能力,尽管研究表明,培养这种能力需要多年的研究生学习。因此,有机化学界需要深入了解这种专业知识是如何发展的,以加快其最新成员的学习。本研究调查了本科生和博士生在解释~(1)H核磁共振谱和互补红外谱时的理解和信息处理。18名本科和7名博士化学专业的学生使用与产物对应的光谱评估了一系列合成的结果。测量眼动以确定本科生和博士生参与者之间认知过程的差异,并进行访谈以阐明指导参与者推理的化学假设。结果表明,解释光谱需要五个方面的理解,而理解的进展对应于实验和隐含化学变量知识的增加。本科生表现出对所有信息的不知情双向处理,而博士生表现出对相关信息的知情单向处理。这些发现意味着社区可以通过培养相关理解和鼓励使用知情的解释策略来支持新手发展专业知识,包括相关变量的初步评估、预期光谱特征的预测,以及跨光谱搜索补充数据。

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