课程大纲
COURSE SYLLABUS
1.
课程代码/名称
Course Code/Title
电极过程动力学导论
Introduction to Kinetics of Electrode Processes
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
2/32
4.
授课语言
Teaching Language
英文 English
5.
授课教师
Instructor(s)
顾均 助理教授 30015662
6.
是否面向本科生开放
Open to undergraduates
or not
7.
先修要求
Pre-requisites
本科生选课需先修《物理化学 I CH301
Physical Chemistry I: CH301
8.
教学目标
Course Objectives
本课程是针对化学、材料化学专业研究生以及化学专业高年级本科生开设的专业选修课。旨在帮助学生构建电化学的
基本理论基础,理解电极过程的物理化学原理,掌握电化学测试分析的基本方,了解电化学在能源存储利用污染
物降解等前沿领域中的应用,为将来在相关领域的研究打好基础。
This is an elective course designed for graduate students major in chemistry and material chemistry and
senior undergraduate students major in chemistry. The objectives are to help students to build up the
knowledge frame of the theory in electrochemistry, understand the physical and chemical principles of
electrode processes, grasp the basic experimental methods for electrochemical measurement and analysis,
learn the latest progresses in the applications of electrochemistry in the fields of energy storage and
conversion and degradation of pollutant substances, gain a good basis for the future research in the
related fields.
9.
教学方法
Teaching Methods
课堂讲授
Classroom teaching
10.
教学内容
Course Contents
Section 1
A brief introduction to electrode processes
Section 2
Thermodynamics and electrode potential
Section 3
Properties of electrode-solution interface
Section 4
Mass transport in solution near electrode
Section 5
Kinetics of electron transfer
Section 6
Multi-step reactions
Section 7
Basic potential step methods
Section 8
Potential sweep methods
Section 9
Electrochemical catalysis
Section 10
An introduction to impedance methods
11.
课程考核
Course Assessment
出勤 10%;平时作业 20%;课程项目(课堂汇报 10%,论文报告 10%);期末考试(闭卷) 50%
Attendance 10%, Assignments 20%, Project (Presentation 10%, Report 10%), Final exam (closed-book) 50%
12.
教材及其它参考资料
Textbook and Supplementary Readings
1. Electrochemical Methods, Fundamentals and Applications, Second Edition, A. J. Bard, L. R. Faulkner,
Wiley, 2001.
2. 电极过程动力学导论, 査全性 , 科学出版社, 2002.