课程大纲
COURSE SYLLABUS
1.
课程代码/名称
Course Code/Title
柔性电子制造:材料、器件与工
Flexible and Wearable Electronics: Design and Fabrication Techniques
2.
课程性质
Compulsory/Elective
专业选修课
Major Elective Courses
3.
课程学分/学时
Course Credit/Hours
3/48
4.
授课语
Teaching Language
中英双语
English & Chinese
5.
授课教
Instructor(s)
丘龙斌,助理教授,机械与能源工程系,
Email: qiulb@sustc.edu.cn
Longbin Qiu, Assistant Professor,
Department of Mechanical and Energy Engineering,
Email: qiulb@sustech.edu.cn
6.
是否面向本科生开放
Open to undergraduates
or not
Yes
7.
先修要
Pre-requisites
If the course is open to
undergraduates, please indicate the difference.)
本科生:材料科学基础或者材料科学与工程基础或者工程材料-科学、工艺与设计
研究生:无
8.
教学目
Course Objectives
If the course is open to undergraduates, please indicate the
difference.)
1)研究生教学目标:通过该课程的教学使学生了解柔性电子器件的技术发展及应用的最新趋势,掌握柔
性电子器件设计及制造的基础理论,了解相关器件的工作原理及材料制备技术,提高学生的创新思维意
识,培养学生的工程分析及设计能力。通过该课程的教学使研究生掌握非传统制造领域,尤其是柔性电子
制造领域的关键技术,为后续工作中专业能力的提升及发展奠定一定的基础。
The objectives of this course: To enable students to understand the latest trend of the development and
application of flexible and wearable electronic devices, master the design and fabrication principle of
flexible electronics, understand the basic working principle of related devices and the fabrication
techniques for the functional materials, improve students' sense of innovative thinking, and cultivate
students' engineering analysis and design capabilities. Through the teaching of this course, graduate
students can master the key technologies in non-traditional manufacturing fields, especially in the field of
flexible electronics fabrication, and lay a certain foundation for the improvement and development of
professional ability in subsequent work.
2)本科生教学目标:让本科生了解柔性电子器件的技术原理与应用领域,以及掌握柔性电子器件的功
性材料加工技术,最终为学生今后从事与纳米制造研究、柔性电子器件等相关研发或者生产经营活动奠定
良好理论基础。
Course objectives for undergraduates: To enable undergraduates to understand the design and
fabrication principles and application scope of flexible electronics, and to master the techniques for the
flexible electronic and functional materials fabrication. Eventually the course will lay a good theoretical
foundation for students who expect to engage in R&D and/or production and operation activities related
to nano-fabrication and flexible electronics, etc.
9.
教学方
Teaching Methods
If the course is open to undergraduates, please indicate the
difference.)
教室讲授,使用多媒体授课,进行案例解析,并设置课程报告环节,
Class room lecture, applying multimedia, case and reference study, class project (writing report + oral
presentation)
对本科生和研究生使用相同方法,不同评估标准(课后作业和课程项目难度不同)。
Use the same teaching method for both undergraduate and graduate students, but with different
assessment criteria (different difficulty in homework and course projects).
10.
教学内
Course Contents
(如面向本科生开放,请注明区分内容。 If the course is open to undergraduates, please indicate the
difference.)
Section 1
(2 hours)
Introduction of flexible electronic technologies
柔性电子技术概述
Section 2
(6 hours)
Functional Materials for flexible electronics
柔性电子器件功能材料
Section 3
(10 hours)
Flexible functional devices: thin film transistors, sensors, solar cells etc.
柔性功能器件:薄膜晶体管、传感器、太阳能电池及可穿戴能源织物
Section 4
(4 hours)
Flexible silicon nanoelectronics
柔性硅基纳米电子器件
Section 5
(4 hours)
The mechanics of flexible electronic with layer by layer structure
柔性电子多层膜结构力学与表征
Section 6
(2 hours)
Techniques for thin film deposition
薄膜沉积技术
Section 7
(4 hours)
The encapsulation for flexible electronics
柔性电子器件封装
Section 8
(4 hours)
The micro-nano patterning techniques
微纳图案化工
Section 9
(2 hours)
The roll-to-roll fabrication techniques
卷对卷制造技
Section 10
(10 hours)
The application of flexible electronics
柔性电子器件的应用
11.
课程考
Course Assessment
1
考核形式 Form of examination:考核 Assessment
2
分数构 grading policy:a.出 Attendance 5%; b.课堂表现 Class performance 10%; c.课程项目 Projects
40%; d.期末报告 Final report/presentation 45%
3
If the course is open to undergraduates, please indicate the
difference.)
本科生考核分数构成如下 Grading policy for
a. Attendance 15%; b. Class performance 15%; c. Projects 40%; d. Final
presentation 30%
12.
教材及其它参考资料
Textbook and Supplementary Readings
教材及参考材料:
《柔性电子制造:材料、器件与工艺》,尹周平,黄勇安 编著,科学出版社
Flexible and Wearable Electronics: Design and Fabrication Techniques, Haider K. Raad, United Scholars
Publications, USA