Materials Science of Semiconductors and Dielectrics

We train multidisciplinary professionals for scientific and industrial work in the fields of analytical methods of research, development and production of various materials, including biocompatible materials (semiconductors, dielectrics, metals) used in micro- and nanoelectronics, optoelectronics, solar energy, power electronics and information display devices, in medicine.

The program is delivered in a multitrack format and includes two tracks:

  • “Materials science of nanoelectronics functional materials”,
  • “Laser technology: materials and devices”.
2 years of study

Full-time education in Russian

College of New Materials

Major # 22.04.01
Materials Science &Technologies

490 000 ₽

Admissions

Details of admission

E-mail: welcome@misis.ru

International Students Service +7 499 649-44-80

Personally: Moscow, Leninsky Prospekt 4, block 1 (main building), 1st floor

Teachers

Dmitriy Alexandrovich Kiselev

Ph.D. in Physics and Mathematics, Head of the Department of Materials Science of Semiconductors and Dielectrics, Head of Laboratory of Physics of Oxide Ferroelectrics

Research interests: ferroelectrics and related materials (single crystals, ceramics, thin films).

+7 495 955-01-51
dm.kiselev@misis.ru

Sergey Nikolaevich Smetanin

Doctor of Sciences in Physics and Mathematics, Associate Professor at the Department of Materials Science of Semiconductors and Dielectrics

Research interests: active and nonlinear optical materials and devices for laser physics and nanophotonics.

+7 495 236-05-12
ssmetanin@misis.ru

Other programs

Physics, Research Methods, and Technologies of Functional Materials

The Specialized Higher Education program in Physics, Research Methods, and Technologies of Functional Materials is aimed at training highly qualified specialists in the field of studying the structure and properties of inorganic materials (including nanostructured and nanoscale ones) for various applications, including functional materials with record magnetic properties (soft magnetic and hard magnetic), as well as materials for biomedical applications. From the first year students are involved in the processes of developing, researching and obtaining new materials using unique equipment of the latest generation. Graduates of the program work in leading scientific organizations and companies with high-tech industries.

Fundamental Engineering of Functional and Structural Materials

This is a new program. The page is under construction.

Materials Science of Innovative Structural Materials

This is a new program. The page is under construction.

Advanced Materials

Advanced materials science paves the way for the creation of future technologies: from quantum devices to aerospace alloys. The English-language, multi-track Master’s program “Advanced Materials” trains research engineers specializing in various areas of materials science, from metals and alloys to semiconductors and dielectrics. The program combines a strong foundation in physics and chemistry with applied engineering tasks, including computer-aided design (CAD/CAM), the synthesis and study of new advanced materials, and perovskite photonics. Graduates are sought after by R&D centers, large corporations, aerospace companies, and the renewable energy sector, which require experts who can develop materials with specific properties and incorporate them into high-tech manufacturing.