Branch Details

Advanced Nanotechnologies and Microtechnologies

CEITEC VUTAbbreviation: ANTMTAcad. year: 2019/2020

Programme: Advanced Materials and Nanosciences

Length of Study: 4 years

Accredited from: 1.1.2011Accredited until:

Profile

The field of study "Advanced Microtechnologies and Nanotechnologies" will provide students with knowledge and skills focused mainly on the issue of nanotechnology of materials and structures generally suitable for nanoelectronics and ananophotonics. This area includes both the preparation and characterization of nanostructures (specifically, semiconductor nanostructures, metallic and magnetic nanostructures, oxide superconductors and magnetics, nanotubes, nanofibers, supramolecules, and nanoelectronic elements beyond Moore's Law, etc.) will be investigated. The field also includes biological and medical applications of these materials and products (eg biosensors, nanodots, etc.).
By completing the study, the student will gain sufficient professional knowledge and skills needed to solve various scientific problems of research and development institutions and industrial practice. The graduate will be able to work at the necessary level for further development of the field at the workplaces of their further activities (academic and scientific institutions and institutions in the field of implementation) and contribute to improving the competitiveness of research and application areas of these institutions. The concept of the study program enables students to acquire sufficient competencies for cooperation in national and international development, design and research teams. The graduate of this field will gain solid abilities and skills to work in scientific and research centers not only in the Czech Republic but also abroad.

Entry requirements

http://amn-phd.ceitec.cz/admission-step-by-step/

Guarantor

Issued topics of Doctoral Study Program


Course structure diagram with ECTS credits

1. year of study, winter semester
AbbreviationTitleL.Cr.Com.Prof.Compl.Hr. rangeGr.Op.
DS444AAcademic English for PhDen0Compulsory-ExP - 26yes
DS446AFriday CEITEC BUT seminaren2Compulsory-Cryes
DS113APrinciples of Nanosciences and Nanotechnologiesen0Compulsory-DrExP - 26yes
DS113Principles of Nanosciences and Nanotechnologiescs0Compulsory-DrExK - 26yes
DS213A Advanced ceramics technologiesen0Compulsory-optional-DrExyes
DS216AAdvanced fracture mechanicsen0Compulsory-optional-DrExyes
DS210AAdvanced synthesis of nanoparticle ceramic materialsen0Compulsory-optional-DrExyes
DS201AAdvanced Topics in Polymer Physicsen0Compulsory-optional-DrExyes
DS101Inorganic Materials Chemistrycs0Compulsory-optional-DrExyes
DS202A Bioceramics materials and biocompositesen0Compulsory-optional-DrExyes
DS202Bioceramics materials and biocompositescs0Compulsory-optional-DrExyes
DS204A Colloids, Surfaces and Catalysisen0Compulsory-optional-DrExyes
DS203Degradation and stability of polymerscs0Compulsory-optional-DrExyes
DS203A Degradation and stability of polymersen0Compulsory-optional-DrExyes
DS102ADiagnostics and measurements of functional properties of nanostructuresen0Compulsory-optional-Exyes
DS102Diagnostics and measurements of functional properties of nanostructurescs0Compulsory-optional-Exno
DS103AExperimental biophotonicsen0Compulsory-optional-DrExyes
DS103Experimental biophotonicscs0Compulsory-optional-DrExK - 26yes
DS104Physical Principles of Deformation of Solidscs0Compulsory-optional-DrExyes
DS105Green's functions in modern condensed matter physicscs0Compulsory-optional-DrExyes
DS105AGreen's functions in modern condensed matter physicsen0Compulsory-optional-DrExyes
DS214AHigh temperature process in inorganics materialsen0Compulsory-optional-DrExyes
DS101AInorganic Materials Chemistryen0Compulsory-optional-DrExyes
DS215Topics in Advaced Ceramic Materialscs0Compulsory-optional-DrExyes
DS204Colloids, Surfaces and Catalysiscs0Compulsory-optional-DrExyes
DS114ALaser-Induced Breakdown Spectroscopy – fundamentals, utilization and related techniquesen0Compulsory-optional-DrExyes
DS206X-ray structure analysis methodscs0Compulsory-optional-DrExyes
DS106AMicro and nano computed tomographyen0Compulsory-optional-DrExyes
DS207A Micromechanics of Deformation and Fracture of Advanced Materialsen0Compulsory-optional-DrExyes
DS107AMicrotechnologiesen0Compulsory-optional-DrExyes
DS106Micro and nano CTcs0Compulsory-optional-DrExyes
DS207Micromechanics of Deformation and Fracture of Advanced Materialscs0Compulsory-optional-DrExyes
DS107Microtechnologiescs0Compulsory-optional-DrExyes
DS108Nanophotonicscs0Compulsory-optional-DrExyes
DS108ANanophotonicsen0Compulsory-optional-DrExyes
DS208Non-oxide ceramicscs0Compulsory-optional-DrExyes
DS208ANon-oxide ceramicsen0Compulsory-optional-DrExyes
DS104A Physical Principles of Deformation of Solidsen0Compulsory-optional-DrExyes
DS216Advanced fracture mechanicscs0Compulsory-optional-DrExyes
DS210Advanced synthesis of nanoparticle ceramic materialscs0Compulsory-optional-DrExyes
DS211APolymers in Medicineen0Compulsory-optional-DrExyes
DS112A Prediction of mechanical and magnetic properties of solids from their electronic structureen0Compulsory-optional-DrExyes
DS112Prediction of mechanical and magnetic properties of solids from their electronic structurecs0Compulsory-optional-DrExyes
DS111ASemiconductor heterostructuresen0Compulsory-optional-DrExno
DS114Laser-Induced Breakdown Spectroscopy – fundamentals, utilization and related techniquescs0Compulsory-optional-DrExyes
DS115ASurface Scienceen0Compulsory-optional-DrExyes
DS213Advanced ceramics technologiescs0Compulsory-optional-DrExyes
DS215ATopics in Advaced Ceramic Materialsen0Compulsory-optional-DrExyes
DS214High temperature process in inorganics materialscs0Compulsory-optional-DrExyes
DS206AX-ray structure analysis methodsen0Compulsory-optional-DrExyes
S4001International performanceen2Elective (voluntary)-ExP - 26yes
S4002Law, ethics and philosophy of scienceen2Elective (voluntary)-ExP - 26yes
1. year of study, summer semester
AbbreviationTitleL.Cr.Com.Prof.Compl.Hr. rangeGr.Op.
DS445AAcademic English for PhD 2en0Compulsory-Exyes
DS446AFriday CEITEC BUT seminaren2Compulsory-Cryes
DS213A Advanced ceramics technologiesen0Compulsory-optional-DrExyes
DS216AAdvanced fracture mechanicsen0Compulsory-optional-DrExyes
DS210AAdvanced synthesis of nanoparticle ceramic materialsen0Compulsory-optional-DrExyes
DS201AAdvanced Topics in Polymer Physicsen0Compulsory-optional-DrExyes
DS202A Bioceramics materials and biocompositesen0Compulsory-optional-DrExyes
DS202Bioceramics materials and biocompositescs0Compulsory-optional-DrExyes
DS204A Colloids, Surfaces and Catalysisen0Compulsory-optional-DrExyes
DS203Degradation and stability of polymerscs0Compulsory-optional-DrExyes
DS203A Degradation and stability of polymersen0Compulsory-optional-DrExyes
DS102ADiagnostics and measurements of functional properties of nanostructuresen0Compulsory-optional-Exyes
DS102Diagnostics and measurements of functional properties of nanostructurescs0Compulsory-optional-Exyes
DS103AExperimental biophotonicsen0Compulsory-optional-DrExyes
DS103Experimental biophotonicscs0Compulsory-optional-DrExyes
DS104Physical Principles of Deformation of Solidscs0Compulsory-optional-DrExyes
DS105Green's functions in modern condensed matter physicscs0Compulsory-optional-DrExyes
DS105AGreen's functions in modern condensed matter physicsen0Compulsory-optional-DrExyes
DS214AHigh temperature process in inorganics materialsen0Compulsory-optional-DrExyes
DS215Topics in Advaced Ceramic Materialscs0Compulsory-optional-DrExyes
DS204Colloids, Surfaces and Catalysiscs0Compulsory-optional-DrExyes
DS114ALaser-Induced Breakdown Spectroscopy – fundamentals, utilization and related techniquesen0Compulsory-optional-DrExyes
DS206X-ray structure analysis methodscs0Compulsory-optional-DrExyes
DS106AMicro and nano computed tomographyen0Compulsory-optional-DrExyes
DS207A Micromechanics of Deformation and Fracture of Advanced Materialsen0Compulsory-optional-DrExyes
DS107AMicrotechnologiesen0Compulsory-optional-DrExyes
DS106Micro and nano CTcs0Compulsory-optional-DrExyes
DS207Micromechanics of Deformation and Fracture of Advanced Materialscs0Compulsory-optional-DrExyes
DS107Microtechnologiescs0Compulsory-optional-DrExyes
DS108Nanophotonicscs0Compulsory-optional-DrExyes
DS108ANanophotonicsen0Compulsory-optional-DrExyes
DS208Non-oxide ceramicscs0Compulsory-optional-DrExyes
DS208ANon-oxide ceramicsen0Compulsory-optional-DrExyes
DS104A Physical Principles of Deformation of Solidsen0Compulsory-optional-DrExyes
DS216Advanced fracture mechanicscs0Compulsory-optional-DrExyes
DS210Advanced synthesis of nanoparticle ceramic materialscs0Compulsory-optional-DrExyes
DS111Semiconductor heterostructurescs0Compulsory-optional-Exno
DS211APolymers in Medicineen0Compulsory-optional-DrExyes
DS112A Prediction of mechanical and magnetic properties of solids from their electronic structureen0Compulsory-optional-DrExyes
DS112Prediction of mechanical and magnetic properties of solids from their electronic structurecs0Compulsory-optional-DrExyes
DS111ASemiconductor heterostructuresen0Compulsory-optional-DrExno
DS212ASpecialty Polymer Synthesisen0Compulsory-optional-DrExno
DS114Laser-Induced Breakdown Spectroscopy – fundamentals, utilization and related techniquescs0Compulsory-optional-DrExyes
DS115ASurface Scienceen0Compulsory-optional-DrExyes
DS213Advanced ceramics technologiescs0Compulsory-optional-DrExyes
DS215ATopics in Advaced Ceramic Materialsen0Compulsory-optional-DrExyes
DS214High temperature process in inorganics materialscs0Compulsory-optional-DrExyes
DS206AX-ray structure analysis methodsen0Compulsory-optional-DrExyes
S4003Career management for scientistsen2Elective (voluntary)-ExP - 26yes
S4004Financing of research – training in grant applicationsen2Elective (voluntary)-ColP - 26yes