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教学系简介

材料物理系简介


材料物理专业成立于2005年。现有教师34人,其中教授6人,副教授6人,博士学位占比78%,国家级省部级人才3人。为优化调整人才培养模式,2019年与中国科学院大学重庆学成立物理菁英班,同年获批材料物理重庆市一流专业建设点;2021年获批物理学一级学科硕士点。拥有国家级省部级科教平台1个以及重庆市教学团队、研究生导师团队2个。专业面向新材料,融合能源、信息、光电领域新技术,以培养能源、信息、新材料行业优质毕业生及研究生源为目标,现有市级一流课程和课程思政4门。与恩捷纽米科技有股份有限公司、国电投重庆研究院、特瑞电池股份有限公司、明途光学科技有限公司、金美新材料科技有限公司等多家能源领域公司保持产学研合作。主要从事高性能新能源材料、火安全聚合物功能材料与发光功能材料等方向的理论研究与应用研发。

The Major of Material Physics was established in 2005. There’re now 33 faculty members in the Major department, where PhD degree recipients account for 78%, including 6 professors, 6 associate professors, and 3 national/provincial leveled talents. In 2019, the “Materials Physics Elite Class” was established with the assistance of the University of Chinese Academy of Science (UCAS, Chongqing), aiming to optimize the student training program. In the same year, the Major of Material Physics was certificated as a construction pilot of the first-rate major of Chongqing. In 2021, it was approved as professional master's degree authorization organization of physics discipline. A provincial science and education platform, and two graduate tutor teaching teams of Chongqing had also been approved. The undergraduate education program of this major now mainly focus on smart materials, including energy materials, electronic information materials and photoelectric materials. The students of the Materials Physics Major are taught and trained in corresponding professional courses with the goal of talent cultivating in the fields of energy materials industries. The teaching team of the Materials Physics Major had established 4 top-level courses and ideological teaching courses of Chongqing. The objective based education (OBE) has been implemented by cooperating companies in the field of energy materials, e.g., Ntenumi Technology Co., LTD., State power Investment Corporation Limited (SPIC) of Chongqing, Terui Battery Co., LTD., Mingtu Optical Technology Co., LTD, Jinmei New Material Technology Co., LTD (JIMAT), etc. The research interests of the Major cover the theories and application of high-performance new energy materials, the structural design of fire-retardant functional materials, performance prediction of luminous functional materials, etc.



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