Course title
2M9947001
Advanced Materials Engineering

ISHIZAKI Takahiro Click to show questionnaire result at 2018
Course content
In this lecture, you can study on various advanced materials. Physicochemical properties, production methods, functionalioties of the advanced materials are explained and reviewed. Application of advance materials such as carbon materials, lithium air batteries, and biomimetic materials to industrial fields are also introduced.
Purpose of class
Purpose of this lecture is to study the functionality and principle of various leading-edge advanced materials. In addition, the physicochemical properties and production methods of the advanced materials are also introduced.
Goals and objectives
  1. Understand the production method and processing of advanced materials.
  2. Understand textures, structures, thermodynamics, and functionalities of the advanced materials.
  3. Understand the relationship between physcochemical properties and functionalities of the advanced materials.
Language
Japanese(English accepted)
Class schedule

Class schedule HW assignments (Including preparation and review of the class.) Amount of Time Required
1. Introduction of advanced materials (1) You must review thermodynamics, electrochemisty, crystal structures, physicalchemistry studied in undergraduate course. 120minutes
2. Introduction of advanced materials (2) You must review thermodynamics, electrochemisty, crystal structures, physicalchemistry studied in undergraduate course. 120minutes
3. Fabrication methods of advanced materials (1) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 100minutes
4. Fabrication methods of advanced materials (2) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
5. Process methods of advanced materials (1) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
6. Process methods of advanced materials (2) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
7. Functionalization of advanced materials (1) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
8. Functionalization of advanced materials (2) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
9. Functionalization of advanced materials (3) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
10. Functionalization of advanced materials (4) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
11. Processing and functionalization of battery materials (1) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
12. Processing and functionalization of battery materials (2) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
13. Processing and functionalization of carbon materials (1) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
14. Processing and functionalization of carbon materials (2) Read and understand research paper, and summarize it. Then, prepare the presentation materials on the research paper. 120minutes
Total. - - 1660minutes
Relationship between 'Goals and Objectives' and 'Course Outcomes'

advanced materials Total.
1. 30% 30%
2. 30% 30%
3. 40% 40%
Total. 100% -
Evaluation method and criteria
Presentation and report (Scoring points 60/100)
Feedback on exams, assignments, etc.
ways of feedback specific contents about "Other"
Textbooks and reference materials
N/A
Prerequisites
Review of physical chemistry, electrochemistry, and crystallography.
Office hours and How to contact professors for questions
  • Every friday, 17:00-18:00
Regionally-oriented
Non-regionally-oriented course
Development of social and professional independence
  • Course that cultivates an ability for utilizing knowledge
Active-learning course
About half of the classes are interactive
Course by professor with work experience
Work experience Work experience and relevance to the course content if applicable
N/A
Education related SDGs:the Sustainable Development Goals
  • 4.QUALITY EDUCATION
Last modified : Sat Sep 09 06:33:09 JST 2023