引入拉曼光谱分析微塑料污染物——一种面向化工本科生的聚合物表征实用方法

IF 2.9 3区 教育学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Qing He, , , Shaolan Zou, , , Fengmin Jin, , , Wen Zhang, , , Zhufeng Geng, , , Huilin Hu, , , Hui Fang, , , Shixin Liu, , , Na Liu, , , Nana Tian*, , , Yinping Li*, , and , Xiaobin Fan*, 
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引用次数: 0

摘要

拉曼光谱是一种强大的振动光谱技术,广泛应用于化学、材料科学和环境分析,通过光谱指纹图谱提供关键的分子信息。然而,本科生往往缺乏优化实验参数、解释振动模式和将化学计量学工具应用于现实世界样品的能力。为了解决这个问题,我们设计了一个基于问题的学习(PBL)实验课程,用于化学工程专业的高分子材料课程。参与者使用拉曼光谱分析了微塑料这一新兴的环境污染物,以识别聚合物类型、分配官能团,并将光谱特征与材料特性联系起来。学生们使用主成分分析(PCA)对聚合物光谱进行分类,并通过得分图将结果可视化,将动手仪器与计算数据分析相结合。这个探究驱动的实验取得了教育成果,包括提高拉曼参数优化和光谱解释的技术技能,熟练掌握化学计量学的材料分类,以及通过真实的环境问题解决提高批判性思维。这个实用的框架连接了基础光谱学、材料科学和数据分析,为本科生进行跨学科研究做准备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Introducing Raman Spectroscopy through Analysis of Microplastic Pollutants: A Polymer Characterization Practical for Chemical Engineering Undergraduates

Introducing Raman Spectroscopy through Analysis of Microplastic Pollutants: A Polymer Characterization Practical for Chemical Engineering Undergraduates

Raman spectroscopy, a powerful vibrational spectroscopic technique widely used in chemistry, materials science, and environmental analysis, provides critical molecular insights through spectral fingerprints. However, undergraduate students often lack proficiency in optimizing experimental parameters, interpreting vibrational modes, and applying chemometric tools to real-world samples. To address this gap, we designed a problem-based learning (PBL) laboratory course for chemical engineering students in a Polymeric Materials curriculum. Participants analyzed microplastics─an emerging environmental contaminant─using Raman spectroscopy to identify polymer types, assign functional groups, and correlate spectral features with material properties. Students employed principal component analysis (PCA) to classify polymer spectra and visualize results through score plots, integrating hands-on instrumentation with computational data analysis. This inquiry-driven experiment achieved educational outcomes including enhanced technical skills in Raman parameter optimization and spectral interpretation, proficiency in chemometrics for material classification, and heightened critical thinking through authentic environmental problem-solving. This practical framework bridges fundamental spectroscopy, materials science, and data analytics, preparing undergraduates for interdisciplinary research.

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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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