Course title
1M5200001
Functional Material Engineering

yamaguchi masaki Click to show questionnaire result at 2017
Course content
Functional materials develop advanced functions by utilizing their mechanical, chemical, optical, electrical, and other properties. Therefore, it is expected to be applied to various applications such as realization of IC, MEMS, memory devices and optical devices.
In this lesson, we focus on dielectric materials and magnetic material and explain the basic theory of various functions of these materials.
Purpose of class
Learn the ability to apply functional materials.
Goals and objectives
  1. will comprehend about functional materials.
  2. will explain about functional materials.
  3. will consider about functional materials application.
Language
Japanese
Class schedule

Class schedule HW assignments (Including preparation and review of the class.) Amount of Time Required
1. What is functional material. Review on the contents of physics, chemistry, electronic properties and so on. 90minutes
Review on lecture contents. 100minutes
2. Fundamental structure of ferroelectric. Read related documentation. 90minutes
Review on lecture contents. 100minutes
3. Fundamental properties of ferroelectric. Read related documentation. 90minutes
Review on lecture contents. 100minutes
4. Ferroelectric material and device design. Read related documentation. 90minutes
Review on lecture contents. 100minutes
5. Current trend in semiconductor memory. Read related documentation. 90minutes
Review on lecture contents. 100minutes
6. Forecast on future semiconductor memory. Read related documentation. 90minutes
Review on lecture contents. 100minutes
7. Pyroelectric material and infrared device. Read related documentation. 90minutes
Review on lecture contents. 100minutes
8. Basics of piezoelectric materials. Read related documentation. 90minutes
Review on lecture contents. 100minutes
9. Piezoelectric device. Read related documentation. 90minutes
Review on lecture contents. 100minutes
10. Electrooptic effect and related material. Read related documentation. 90minutes
Review on lecture contents. 100minutes
11. Spintronics (1)
Basics of magnetic materials.
Read related documentation. 90minutes
Review on lecture contents. 100minutes
12. Spintronics (2)
Magnetoresistive effect.
Read related documentation. 90minutes
Review on lecture contents. 100minutes
13. Spintronics (3)
Nonvolatile memory.
Read related documentation. 90minutes
Review on lecture contents. 100minutes
14. Future prospects Read related documentation. 90minutes
Review on lecture contents. 100minutes
Total. - - 2660minutes
Relationship between 'Goals and Objectives' and 'Course Outcomes'

Report Total.
1. 35% 35%
2. 35% 35%
3. 30% 30%
Total. 100% -
Evaluation method and criteria
Report : 100%.
Will pass this course by total score of 60 or higher.
Textbooks and reference materials
Instructions on the reference book as appropriate.
Prerequisites
Studied “Introduction to Electronic Materials” and “Introduction to Solid State Physics”.
Office hours and How to contact professors for questions
  • 13:00~13:30 on Friday at 09H25 (Toyosu).
Relation to the environment
Environment-related course (10%)
Regionally-oriented
Non-regionally-oriented course
Development of social and professional independence
  • Course that cultivates an ability for utilizing knowledge
Active-learning course
N/A
Course by professor with work experience
Work experience Work experience and relevance to the course content if applicatable
N/A N/A
Last modified : Thu Mar 21 15:02:02 JST 2019