Course title
2M2451001
Materials Electrochemistry/ Exercise 1

KISU Kazuaki
Course content
New materials science research in the 21th century, space environment utilization, the next generation of new energy, nanotechnology, keywords related to the new advanced scientific research area such as quantum effect becomes the center. In this study area field, zero gravity, ultra-high temperature, cryogenic, using extreme environments, such as ultra-high vacuum, aims to enhance the further growth and construction of academic and new developments of materials and materials science research, the weightless environment new material creation science research and the future of the dramatic expansion that utilizes is expected, aiming nanotechnology, next-generation semiconductor devices, high-performance magnetic materials, the performance of the major research challenges in the tip physical area, such as quantum effects application.
Goals and objectives
  1. We aim to construct new research on material crearion science based on advanced physics such as quantum theory, quantum mechanics and electron theory.
  2. We aim to establish microstructure analysis technplogy at atomic level for new material creation science using containerless process.
  3. Construct and carry out new materials science research with keywords of high performance peamanent magnet, new semiconductor device and nanotecnology.
Language
Japanese
Class schedule
Containerless process is a unique material formation method that enables homogenous nucleation. High performance permanent magnet material and next generation high effiency solar spherical single cystal Si by using electromagnetic levitation melt solidification process, levitating melt droplet quenching process, gas jet levitating melt dolidification process and drop tube process, to conduct research to formation new materials and explore new properties. Furthermore, we plan to conduct original experiments and analysis on single crystal formation and crystal growth mechanism from single crystal fine particles and melt of Ⅲ-Ⅴ group compound semiconductors using a containerless process.
Evaluation method and criteria
Reported results of research thesis (report) 30%, 30% Committee interim report, the Society's research thesis 40%.
Feedback on exams, assignments, etc.
ways of feedback specific contents about "Other"
Textbooks and reference materials
Supervisor writing paper and commentary and foreign-related research papers, etc.
(Reference book, for example, Microgravity, Advanced Electronics Series, Edit by Masamichi Ishikawa and Taketoshi Hibiya, BAIFUKAN)
Prerequisites
To acquire the fundamentals of atomic structure, quantum theory, electron theory, quantun mechanics in the first to fourth year of undergraduate course. It is also desirable to master basic knowledge about magnetic materials, semiconductor materials.
Office hours and How to contact professors for questions
  • On Monday, Wednesday and Thursday, please come to the lab at 12: 30 ~ 13: 00.
Regionally-oriented
Non-regionally-oriented course
Development of social and professional independence
  • Course that cultivates a basic problem-solving skills
  • Course that cultivates an ability for utilizing knowledge
  • Course that cultivates a basic self-management skills
  • Course that cultivates a basic interpersonal skills
Active-learning course
Most classes are interactive
Course by professor with work experience
Work experience Work experience and relevance to the course content if applicable
N/A N/A
Education related SDGs:the Sustainable Development Goals
  • 9.INDUSTRY, INNOVATION AND INFRASTRUCTURE
Last modified : Tue Sep 17 18:27:21 JST 2024