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Novel Experimental Modules To Introduce Students to Nanoparticle Characterization in a Chemical Engineering Course

机译:新型实验模块将学生引入化学工程课程中的纳米粒子表征

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The increasing industrial and biomedical applications of nanomaterials have enhanced the need to educate a well-trained nanotechnology workforce. This need has led to efforts to introduce hands-on, nanotechnology-based, experimental modules into high school and college level courses in science and engineering. However, the majority of such efforts have focused on nanoparticle synthesis techniques, and an equally important aspect of working with nanomaterials, nanoparticle characterization, has received less attention. Herein, we report a series of nanoparticle characterization experiments, as part of a newly developed "Nano and Biointerfaces" course, to familiarize upper undergraduate students as well as graduate students in chemical engineering with nanoparticle characterization techniques. An inquiry-based approach was used in that the composition and properties of nanoparticles were not revealed to the students beforehand and students were asked to perform experiments to characterize nanoparticle composition, size, morphology, and surface area. The results of these experiments were compared with certificates of analysis for particles, provided by the vendor, and the differences in measured properties were discussed. Assessment was performed through evaluation of laboratory memos and presentations, a question in the end-of-semester final exam, and a student survey. The modular nature of these experiments allows for them to be implemented, with modifications as needed, in other higher education institutions or in high schools to familiarize students with nanoparticle characterization.
机译:纳米材料的越来越多的工业和生物医学应用增强了教育训练有素的纳米技术劳动力。这一需求导致努力将动手,基于纳米技术的实验模块引入高中和大学级课程的科学和工程。然而,大多数此类努力集中于纳米粒子合成技术,并且与纳米材料,纳米粒子表征一起使用的同样重要的方面受到更少的关注。在此,我们报告了一系列纳米粒子表征实验,作为新开发的“纳米和生物界面”课程的一部分,以熟悉高层本科生以及纳米粒子表征技术的化学工程研究生。使用基于查询的方法,因为纳米颗粒的组成和性质预先向学生泄露,并要求学生进行实验,以表征纳米粒子组成,大小,形态和表面积。将这些实验的结果与供应商提供的颗粒分析证书进行比较,并讨论了测量性质的差异。通过评估实验室备忘录和演示,在学期结束期末考试和学生调查中进行评估。这些实验的模块化性质允许他们在其他高等教育机构或高中进行修改,以熟悉纳米粒子表征的学生。

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