Course detail
Nanoelectronics
FSI-TNIAcad. year: 2025/2026
Electronic properties and quantum phenomena. Nanoelectronic materials (semiconductors, dielectrics, ferroelectrics, magnetoelectronics, organic molecules) and related technological and analytic methods. Novel electronic devices for processing and storing information. Sensors and displays. Solar cells.
Language of instruction
Number of ECTS credits
Assignment to study programme types
Mode of study
Guarantor
Department
Entry knowledge
Rules for evaluation and completion of the course
The presence of students at practice is obligatory and is monitored by a tutor. The way how to compensate missed practice lessons will be decided by a tutor depending on the range and content of the missed lessons.
Aims
Students will learn the current status of the interdisciplinary field of nanoelectronics which will also help them to select their own topic (for diplomma or doctoral thesis).
Study aids
Prerequisites and corequisites
Basic literature
KITTEL, C: Úvod do fyziky pevných látek 1997.
R. WASER (Ed.) Nanoelectronics and Information Technology 2005.
Recommended reading
Elearning
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
Dielectrics (polarisation mechanisms and their frequency dependence, polarisation waves, optical properties). Ferroelectrics (spontaneous polarisation, phase transformations, domains).
Magnetoelectronics and spintronics.
Organic molecules and the structure - electronic properties relationship.
Si MOSFETs, ferroelectric FETs, quantum devices based on resonant tunneling.
Single electron devices. Carbon nanotubes as electronic devices. Molecular electronics and molecular device architecture.
Memory structures and data transmission. Sensors. Displays (OLED, field effect and plasma displays, electronic ink). Nanostructured solar cells.
Exercise
Teacher / Lecturer
Syllabus
Computer-assisted exercise
Teacher / Lecturer
Syllabus
Elearning