创新创业理论研究与实践 ›› 2026, Vol. 9 ›› Issue (9): 40-43.

• 教学革新 • 上一篇    下一篇

基于科研经验深度融合的材料与测试课程改革探索

孟林兴, 杨俊义, 李亮   

  1. 苏州大学 物理科学与技术学院,江苏苏州 215000
  • 出版日期:2026-05-10 发布日期:2026-06-30
  • 通讯作者: 李亮(1979—),男,安徽六安人,博士研究生,教授,研究方向:光电信息、能源材料与器件,电子邮箱:lli@suda.edu.cn。
  • 作者简介:孟林兴(1993—),男,河北邢台人,博士研究生,副研究员,研究方向:光电催化。
  • 基金资助:
    2024年度江苏省高等教育学会高等教育数字化转型与教育现代化实践研究专项课题“基于数字基座构建物理实验教学与管理一体化系统实践研究”(2024CXJG159)

Exploration of the Reform of the Materials and Testing Course Based on the Deep Integration of Scientific Research Experience

MENG Linxing, YANG Junyi, LI Liang   

  1. College of Physical Science and Technology, Soochow University, Suzhou Jiangsu, 215000, China
  • Online:2026-05-10 Published:2026-06-30

摘要: 针对材料与测试课程中长期存在的理论与科研实践脱节、学生实操与数据解读训练薄弱、创新思维培养不足等问题,该文依托笔者长期科研积累,推动课程由知识传授转向科研素养培育。改革的核心为以学生为本,从内容重构、方法创新与评价优化三层推进,解决理论课程与科研实践脱节的问题,具体包括以真实科研问题与测试案例贯穿教学,构建“实地观摩—案例研讨—项目实践”“三位一体”的教学模式,并实施强调过程与能力的多元化评价体系。实践表明:课程改革有效激发了学生的科研兴趣和创新能力,提升了学生仪器操作的规范性及数据分析的深度,为培养具备科研潜质的学生提供了可行路径,也为实践性专业课程改革提供了有益借鉴。

关键词: 材料与测试, 课程改革, 科教融合, 创新能力, 实践教学, 多元评价

Abstract: In response to the persistent problems in the materials and testing course, such as the disconnection between theory and scientific research practice, weak hands-on and data interpretation training for students, and insufficient cultivation of innovative thinking, this paper, based on the author's long-term research accumulation, promotes the course to shift from knowledge imparting to the cultivation of scientific research literacy. The core of the reform is student-oriented, and it is advanced through three aspects: content reorganization, method innovation, and evaluation optimization, solving the problem of the separation between theoretical courses and scientific research practice. Specifically, real scientific research problems and testing cases are integrated throughout the teaching, a“field observation - case discussion - project practice”three-in-one teaching model is constructed, and a diversified evaluation system emphasizing process and ability is implemented. Practice shows that this reform effectively stimulates students'interest in scientific research and innovative ability, improves the standardization of instrument operation and the depth of data analysis, providing a feasible path for cultivating students with scientific research potential, and also offers beneficial references for the reform of practical professional courses.

Key words: Materials and testing, Course reform, Science and education integration, Innovative ability, Practical teaching, Diversified evaluation

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