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Determining the Deacetylation Degree of Chitosan: Opportunities To Learn Instrumental Techniques

机译:确定壳聚糖的脱乙酰化程度:学习乐器技术的机会

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摘要

To enhance critical thinking and problem-solving skills, a project-based learning (PBL) approach for “Instrumental Techniques” courses in undergraduate physical chemistry was specifically developed for a pharmacy bachelor degree program. The starting point of this PBL was an open-ended question that is close to the student scientist’s interest and related to this lab: “How can we determine the deacetylation degree of chitosan?” Chitosan is a polysaccharide used in a broad range of pharmacy applications because of its unique properties. Many of these properties derive from the presence of primary amino groups (?NH_(2)) in its structure. These ?NH_(2) groups are usually formed by the deacetylation of chitin. For this reason, a proper quantification of the deacetylation degree (DD) of chitosan is important to know whether it can be used in a particular application. This driving question requires an experimental procedure that can be carried out by a wide range of instrumental techniques. In this project, techniques such as conductometry, potentiometry, and ~(1)H NMR were addressed to present an easily reproducible experience for first-year undergraduate students. Students evaluated the applicability of the available instrumental techniques, designed their own laboratory procedures, obtained experimental results, and analyzed data in a challenging experience in which high order thinking and knowledge transfer skills were endorsed. The project described here promotes students’ knowledge of instrumental techniques, and offers them an appropriate scenario to develop transferable skills, such as team-working, problem-solving, and written communication, among others.
机译:为了提高关键思维和解决问题的技能,为药房学士学位计划专门制定了一项基于项目的学习(PBL)的学习方法(PBL)课程,用于本科物理化学中的“工具技术”课程。这个PBL的起点是一个开放式的问题,那就是贴近学生科学家的兴趣和与此相关的实验:“我们怎么能确定壳聚糖的脱乙酰度?”壳聚糖是一种在广泛的药房应用中使用的多糖,因为其独特的特性。这些性质中的许多性质从其结构中存在伯氨基(Δnh_(2))。这些?NH_(2)组通常通过甲壳素的脱乙酰化形成。因此,对壳聚糖的脱乙酰化度(DD)的适当定量是重要的,重要的是要知道它是否可以在特定应用中使用。该驾驶问题需要一种实验程序,可以通过各种仪器技术进行。在该项目中,解决了诸如传导,电位测量和〜(1)H NMR的技术,以满足一年级本科学生的易于可重复的经验。学生评估了可用的仪器技术的适用性,设计了自己的实验室程序,获得了实验结果,并在充满挑战的经验中分析了数据,从而认可高阶思考和知识转移技能。项目描述这里promotes学生的仪器技术知识,并为他们提供合适的方案来开发转移的技能,比如团队合作,解决问题,和书面交流,等等。

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