大学化学 >> 2026, Vol. 41 >> Issue (6): 108-117.doi: 10.12461/PKU.DXHX202511208

所属专题: 化学“101计划”案例

专题 上一篇    

化学“101计划”跨学科创新育人闭环模式的构建与实践——以材料化学与柔性电子融合为例

沈宇, 潘婷, 赖文勇   

  1. 南京邮电大学化学与生命科学学院, 柔性电子全国重点实验室, 江苏 南京 210023
  • 收稿日期:2025-11-30 录用日期:2026-03-06 发布日期:2026-06-18
  • 通讯作者: 沈宇 E-mail:iamyshen@njupt.edu.cn Yu Shen
  • 基金资助:
    国家自然科学基金青年项目(22205104, 22305127);南京邮电大学引进人才自然科学研究启动基金(NY222078, NY222079);南京邮电大学教学改革研究项目(JG03025JX34, JG03025JX35)

Construction and practice of an interdisciplinary innovative closed-loop talent cultivation model under the chemistry “101 plan”: a case study of integrating material chemistry with flexible electronics

Yu Shen, Ting Pan, Wenyong Lai   

  1. State Key Laboratory of Flexible Electronics, School of Chemistry and Life Sciences, Nanjing University of Posts and Telecommunications, Nanjing 210023, Jiangsu Province, China
  • Received:2025-11-30 Accepted:2026-03-06 Published:2026-06-18
  • Contact: Yu Shen E-mail:iamyshen@njupt.edu.cn

摘要: 针对传统化学类本科生跨学科培养中知识衔接不系统、理论与实践脱节、创新成果转化不足等问题,南京邮电大学化学与生命科学学院以化学“101计划”核心课程体系为基础框架,构建了“课程矩阵-科研实践-竞赛转化-成果反哺”跨学科创新育人闭环模式。该模式通过“基础课程优化+跨学科模块嵌入”的系统整合方式,深度衔接化学“101计划”在核心课程优化、科研反哺教学和拔尖人才培养方面的核心要求。依托多元化课程体系、精准化导师指导、立体化产教融合,通过“知识输入-实践创新-教学迭代”的自然流转,着力提升学生多维创新能力。实践成效显著:本科生科研参与率大幅提升,学术产出与竞赛成绩突出,教学反哺实效凸显,毕业生发展能级显著增强。该模式为基层院校依托自身特色落实化学“101计划”提供了可复制的跨学科育人实践范式。

关键词: 化学“101计划”, 三三育人, 全员本科生导师制, 柔性电子, 跨学科闭环培养

Abstract: To address the key challenges in traditional interdisciplinary training for chemistry undergraduates—such as disjointed knowledge integration, theory-practice disconnects, and insufficient innovation translation—the School of Chemistry and Life Sciences at Nanjing University of Posts and Telecommunications has developed a closed-loop cultivation model based on the core curriculum framework of the Chemistry “101 Plan”. Through systematic integration of “basic course optimization + interdisciplinary module embedding”, this model fully meets the core requirements of the Chemistry “101 Plan” in three aspects: core course optimization, research-driven teaching enhancement, and elite talent cultivation. Leveraging a diversified curriculum system, precision-based mentoring, and comprehensive industry-education integration, the model facilitates a natural progression through “knowledge acquisition, practical innovation, and teaching iteration” to strengthen students’ multidimensional innovative capabilities. Implementation results demonstrate significant outcomes: substantial increases in undergraduate research participation rates, exceptional academic outputs and competition achievements, pronounced teaching feedback effects, and marked improvements in graduate career readiness. This model provides a replicable interdisciplinary education paradigm for regional universities to implement the Chemistry “101 Plan” while leveraging their distinctive strengths.

Key words: Chemistry “101 Plan”, “Three-Three” talent cultivation, Full-scale undergraduate tutorial system, Flexible electronics, Interdisciplinary closed-loop cultivation