大学化学 >> 2025, Vol. 40 >> Issue (1): 91-98.doi: 10.12461/PKU.DXHX202404082

所属专题: 自由基化学

教学研究与改革 上一篇    下一篇

基于深度学习的有机合成化学课程思政教学设计——以“自由基反应及其应用”为例

张鸽, 任敏, 汪越   

  1. 东北师范大学化学学院, 长春 130024
  • 收稿日期:2024-04-15 录用日期:2024-05-30 发布日期:2025-01-06
  • 通讯作者: 张鸽 E-mail:zhangg492@nenu.edu.cn
  • 基金资助:
    国家自然科学基金(22171043)

Ideological and Political Education Design in Organic Synthesis Chemistry Course Based on Deep Learning: A Case Study of “Radical Reactions and Their Applications”

Ge Zhang, Min Ren, Yue Wang   

  1. Department of Chemistry, Northeast Normal University, Changchun 130024, China
  • Received:2024-04-15 Accepted:2024-05-30 Published:2025-01-06
  • Contact: Ge Zhang E-mail:zhangg492@nenu.edu.cn

摘要: 有机合成化学是高校化学类本科生的一门专业选修课。自由基化学是有机化学学科中非常前沿的研究领域。针对当前学生在基础有机化学中自由基化学知识构建缺失的现状,提出以“立德树人”的课程思政为指引,以“深度学习”为目标,以“科学前沿”的中国自信为背景的互动教学,在合成化学课程中设计自由基反应相关知识模块,从自由基的引入、深化、拓展及不对称自由基反应的应用等多方面深度学习,凝练合成化学课程思政元素,建构思政案例库,为本科阶段有机合成化学教学与课程思政相结合提供新的视角。

关键词: 有机合成化学, 自由基反应, 课程思政, 深度学习, 教学创新

Abstract: Organic synthetic chemistry is an elective course for undergraduate chemistry majors at universities. Radical chemistry represents a cutting-edge area of research field within organic chemistry. Addressing the current gap in students’ understanding of radical chemistry concepts in foundational organic chemistry, this study proposes an interactive teaching approach guided by a “moral education” framework, aiming for “deep learning”, and taking “scientific frontiers” as a backdrop for cultivating national confidence. The course design encompasses a knowledge module on radical reactions, facilitating in-depth exploration through various aspects, including the introduction, development, and expansion of radical concepts, as well as the application of catalytic asymmetric radical reactions. This approach aims to integrate ideological and political elements into the organic synthesis curriculum, establish a repository of case studies for ideological education, and offer a novel perspective on the integration of organic synthesis teaching with ideological and political education for undergraduate students.

Key words: Organic synthesis chemistry, Radical reaction, Curriculum ideological and political education, Deep learning, Teaching innovation