A Novel and Simple Experimental Procedure for Synthesizing, Purifying, and Identifying Coumarin in Undergraduate Heterocyclic Chemistry Laboratories

IF 2.5 3区 教育学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Mónica I. García-Aranda, Marco Franco-Pérez* and Angel Zamudio-Medina*, 
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Abstract

Heterocyclic compounds are an integral part of research, particularly in the pharmaceutical field. The synthesis of such compounds in an undergraduate laboratory can help students understand the relevance and importance of their field of study. Our experimental activity introduces a novel procedure to synthesize coumarin, a heterocyclic formed by two fused rings, using commercial reagents and equipment found in most undergraduate teaching laboratories. What sets our proposed procedure apart is its short reaction time (15 min), high yields (80–85%), and avoidance of extreme experimental conditions, making it highly suitable for implementation in heterocyclic chemistry laboratories at the undergraduate level. The reaction mechanism is straightforward and easily comprehensible to students. Additionally, the fluorescence properties of coumarin are utilized to visually inspect the reaction’s progress and the corresponding purification procedure, enhancing the experiment’s pedagogical value and piquing the student’s curiosity. We successfully implemented this experimental proposal in three different groups, involving approximately 90 students, and received enthusiastic feedback. The heterocyclic compound obtained in the laboratory was highly engaging for the students, as it allowed them to apply the theoretical knowledge gained in their classes to practical experiments. They had the opportunity to explore the reactivities of the functional groups and witness the formation of a compound of great biological importance. The synthesis of heterocycles with notable biological applications serves as an exciting activity for the students. The fluorescent properties of the formed coumarin not only identify the product by visual inspection but also allow them to delve into the concept of fluorescence.

Abstract Image

一种新颖简便的香豆素合成、纯化和鉴定实验方法
杂环化合物是研究的一个组成部分,特别是在制药领域。在本科生实验室中合成此类化合物可以帮助学生理解其研究领域的相关性和重要性。我们的实验活动介绍了一种合成香豆素的新方法,香豆素是一种由两个稠环形成的杂环,使用大多数本科教学实验室中的商业试剂和设备。我们提出的程序与众不同之处在于其反应时间短(15分钟),产率高(80-85%),并且避免了极端的实验条件,因此非常适合在本科生的杂环化学实验室中实施。反应机制简单易懂。此外,香豆素的荧光特性被用来直观地检查反应的进展和相应的纯化程序,提高了实验的教学价值,激发了学生的好奇心。我们在三个不同的小组中成功地实施了这一实验建议,涉及大约90名学生,并收到了热烈的反馈。在实验室中获得的杂环化合物非常吸引学生,因为它使他们能够将课堂上获得的理论知识应用到实际实验中。他们有机会探索官能团的反应性,并见证了一种具有重大生物学意义的化合物的形成。具有显著生物学应用的杂环的合成对学生来说是一项令人兴奋的活动。形成的香豆素的荧光性质不仅可以通过视觉检查来识别产品,还可以让他们深入研究荧光的概念。
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来源期刊
Journal of Chemical Education
Journal of Chemical Education 化学-化学综合
CiteScore
5.60
自引率
50.00%
发文量
465
审稿时长
6.5 months
期刊介绍: The Journal of Chemical Education is the official journal of the Division of Chemical Education of the American Chemical Society, co-published with the American Chemical Society Publications Division. Launched in 1924, the Journal of Chemical Education is the world’s premier chemical education journal. The Journal publishes peer-reviewed articles and related information as a resource to those in the field of chemical education and to those institutions that serve them. JCE typically addresses chemical content, activities, laboratory experiments, instructional methods, and pedagogies. The Journal serves as a means of communication among people across the world who are interested in the teaching and learning of chemistry. This includes instructors of chemistry from middle school through graduate school, professional staff who support these teaching activities, as well as some scientists in commerce, industry, and government.
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