Contact
Email: | |
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Website: | https://www.vutbr.cz/lide/miroslav-cerny-2515 |
Phone: | +420 54114 2709 |
Research group: | Fabrication and Characterisation of Nanostructures - Tomáš Šikola |
Workplace: |
Job description
- Ab initio calculations of strength and stability of crystals and interfaces subjected to complex loading.
- Study of electronic structure and magnetism in bulk crystals, interfaces and multilayered systems.
- Multiscale modelling of deformation processes.
Education and academic qualification
1996, Mgr., Pedagogical Faculty of Masaryk University, physics and technical education
2001, Ph.D., Faculty of Mechanical Engineering, Brno University of Technology, specialization: Physical and materials engineering
2008, assoc. prof. (doc.), Faculty of Mechanical Engineering, Brno University of Technology, specialization: Applied Physics
Career overview
1999 - 2001, teacher and junior assistent at Institute of engineering physics, Faculty of Mechaniccal Engineering, Brno University of Technology
2000 - 2001, Institute of Physics of Materials, Academy of Sciences of Czech Republic, Brno
2002 - 2008, teacher and research assistent at Institute of engineering physics, Faculty of Mechaniccal Engineering, Brno University of Technology
2008 - present, associate professor at Faculty of Mechaniccal Engineering, Brno University of Technology
2012 - present, senior researcher at CEITEC BUT
AMN SEMINAR SERIES: Challenge for Fracture Nanomechanics
Challenge for Fracture Nanomechanics As materials with nanoscale dimensions are used in various applications such as semiconductors, sensors, and…
Publications that are part of the Web of Science database, possibly also other publications chosen by authors.
2021
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BIJALWAN, V.; PRAJZLER, V.; ERHART, J.; TAN, H.; ROUPCOVÁ, P.; SOBOLA, D.; TOFEL, P.; MACA, K., 2021: Rapid pressure-less and spark plasma sintering of (Ba0.85Ca0.15Zr0.1T0.9)O3 lead-free piezoelectric ceramics. JOURNAL OF THE EUROPEAN CERAMIC SOCIETY 41(4), p. 2514 - 10, doi: 10.1016/j.jeurceramsoc.2020.11.029; FULL TEXT
(RIGAKU3, VERIOS)
2020
- FRIÁK, M.; ČERNÝ, M.; VŠIANSKÁ, M.; ŠOB, M., 2020: Impact of Antiphase Boundaries on Structural, Magnetic and Vibrational Properties of Fe3Al. MATERIALS , p. 1 - 14, doi: 10.3390/ma13214884; FULL TEXT
- ČERNÝ, M.; POKLUDA, J., 2020: On the effect of supercell size and strain localization in computational tensile tests. MODELLING AND SIMULATION IN MATERIALS SCIENCE AND ENGINEERING 28(6), p. 065011-1 - 10, doi: 10.1088/1361-651X/ab9f83; FULL TEXT
- ŠESTÁK, P.; ČERNÝ, M.; ZHANG, Z.; POKLUDA, J., 2020: Extraordinary Response of H-Charged and H-Free Coherent Grain Boundaries in Nickel to Multiaxial Loading. CRYSTALS 10(7), p. 1 - 12, doi: 10.3390/cryst10070590; FULL TEXT
- KOTOUL, M.; SKALKA, P.; PROFANT, T.; ŘEHÁK, P.; ŠESTÁK, P.; ČERNÝ, M.; POKLUDA, J., 2020: A novel multiscale approach to brittle fracture of nano/micro-sized components. FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES , p. 1630 - 16, doi: 10.1111/ffe.13179; FULL TEXT
2019
- ČERNÝ, M.; ŠESTÁK, P.; ŘEHÁK, P.; VŠIANSKÁ, M.; ŠOB, M., 2019: Atomistic approaches to cleavage of interfaces. MODELLING AND SIMULATION IN MATERIALS SCIENCE AND ENGINEERING 27(3), p. 035007-1 - 20, doi: 10.1088/1361-651X/ab0293; FULL TEXT
- KOTOUL, M.; SKALKA, P.; PROFANT, T.; FRIÁK, M.; ŘEHÁK, P.; ŠESTÁK, P.; ČERNÝ, M.; POKLUDA, J., 2019: Ab Initio Aided Strain Gradient Elasticity Theory in Prediction of Nanocomponent Fracture. MECHANICS OF MATERIALS 136, p. 103074-1 - 10, doi: 10.1016/j.mechmat.2019.103074; FULL TEXT
- KOUTNÁ, N.; ŘEHÁK, P.; CHEN, Z.; BARTOSIK, M.; FALLMANN, M.; ČERNÝ, M.; ZHANG, Z.; FRIÁK, M.; ŠOB, M.; MAYRHOFER, P.H.; HOLEC, D., 2019: Correlating structural and mechanical properties of AlN/TiN superlattice films. SCRIPTA MATERIALIA 165, p. 159 - 5, doi: 10.1016/j.scriptamat.2019.02.021; FULL TEXT
- KÁŇA, T.; ZOUHAR, M.; ČERNÝ, M.; ŠOB, M., 2019: Ab initio study of the theoretical strength and magnetism of the Fe-Pd, Fe-Pt and Fe-Cu nanocomposites. JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS 469, p. 100 - 8, doi: 10.1016/j.jmmm.2018.08.027; FULL TEXT
2018
- ČERNÝ, M., 2018: Strength of FePd/MgO and FePt/MgO interfaces from first principles. MODELLING AND SIMULATION IN MATERIALS SCIENCE AND ENGINEERING 26(3), p. 035002-1 - 11, doi: 10.1088/1361-651X/aaa5d3; FULL TEXT
- Hyskova, V; Belonoznikova, K; Synkova, H; Gielen, H; Valcke, R; Cerny, M; Ryslava, H, 2018: What are the effects of protein nutrition on photosynthetic parameters and stress markers in tobacco plants?. FEBS OPEN BIO 8, p. 163 - 163
- Belonoznikova, K; Cerny, M; Synkova, H; Gielen, H; Valcke, R; Hyskova, V; Hodek, O; Krizek, T; Schnablova, R; Ryslava, H, 2018: What happens with tobacco metabolism if protein casein is the only source of nitrogen?. FEBS OPEN BIO 8, p. 160 - 160
- Cerny, M; Berka, M; Brzobohaty, B; Saiz-Fernandez, I; Tomsovsky, M; Zelena, P, 2018: Barley response to Phytophthora from a proteomics perspective. FEBS OPEN BIO 8, p. 101 - 102
2017
- ŠESTÁK, P.; ČERNÝ, M.; POKLUDA, J., 2017: Energetics of NiTi allotropes under uniaxial compression. SCRIPTA MATERIALIA 133, p. 92 - 4, doi: 10.1016/j.scriptamat.2017.02.020; FULL TEXT
- ČERNÝ, M.; ŘEHÁK, P.; POKLUDA, J., 2017: The origin of lattice instability in bcc tungsten under triaxial loading. PHILOSOPHICAL MAGAZINE 97(32), p. 2971 - 14, doi: 10.1080/14786435.2017.1363424; FULL TEXT
- ŘEHÁK, P.; ČERNÝ, M.; HOLEC, D., 2017: Interface-induced electronic structure toughening of nitride superlattices. SURFACE AND COATINGS TECHNOLOGY 325, p. 410 - 7, doi: 10.1016/j.surfcoat.2017.06.065; FULL TEXT
2016
- ČERNÝ, M.; ŠESTÁK, P.; ŘEHÁK, P.; VŠIANSKÁ, M.; ŠOB, M., 2016: Ab initio tensile tests of grain boundaries in the fcc crystals of Ni and Co with segregated sp-impurities. MATERIALS SCIENCE AND ENGINEERING A 669, p. 218 - 8, doi: 10.1016/j.msea.2016.05.083; FULL TEXT
- ČERNÝ, M.; ŠESTÁK, P.; POKLUDA, J., 2016: Stress coupling effect on ideal shear strength: tungsten as a case study. ADVANCES IN MATERIALS SCIENCE AND ENGINEERING , p. 5317985-1 - 5, doi: 10.1155/2016/5317985; FULL TEXT
- ŠESTÁK, P.; ČERNÝ, M.; HE, J.; ZHANG, Z.; POKLUDA, J., 2016: Multiaxial stress-strain response and displacive transformations in NiTi alloy from first principles. ACTA MATERIALIA 109, p. 223 - 7, doi: 10.1016/j.actamat.2016.02.043; FULL TEXT
2015
- ŘEHÁK, P.; ČERNÝ, M.; ŠOB, M., 2015: Mechanical stability of Ni and Ir under hydrostatic and uniaxial loading. MODELLING AND SIMULATION IN MATERIALS SCIENCE AND ENGINEERING 23(5), p. 1 - 10, doi: 10.1088/0965-0393/23/5/055010; FULL TEXT
- POKLUDA, J.; ČERNÝ, M.; ŠOB, M.; UMENO, Y., 2015: Ab Initio Calculations of Mechanical Properties: Methods and Applications.. PROGRESS IN MATERIALS SCIENCE 73, p. 127 - 32, doi: 10.1016/j.pmatsci.2015.04.001; FULL TEXT
2014
- ŘEHÁK, P.; ČERNÝ, M., 2014: Dynamic stability of Ni fcc crystal under isotropic tension. , p. 47 - 4, doi: 10.4028/www.scientific.net/KEM.592-593.47; FULL TEXT
- ČERNÝ, M.; ŠESTÁK, P.; ŘEHÁK, P.; ŠOB, M.; VŠIANSKÁ, M., 2014: Tensile strength of Ni grain-boundary with segregated sp-impurities. ; FULL TEXT
- ŘEHÁK, P.; ČERNÝ, M.; ŠOB, M., 2014: Mechanical stability of cubic crystals under hydrostatic and uniaxial loading. ; FULL TEXT
- ŠANDERA, P.; POKLUDA, J.; SCHÖBERL, T.; HORNÍKOVÁ, J.; ČERNÝ, M., 2014: Modeling Load-displacement Curve and Pop-in Effect in Nanoindentation Tests. 20TH EUROPEAN CONFERENCE ON FRACTURE 3, p. 1111 - 6, doi: 10.1016/j.mspro.2014.06.181; FULL TEXT
- ŠESTÁK, P.; ČERNÝ, M.; POKLUDA, J., 2014: On the effect of deformation twins on stability of B19´ structure in NiTi martensite. COMPUTATIONAL MATERIALS SCIENCE 87, p. 107 - 5, doi: 10.1016/j.commatsci.2014.02.012; FULL TEXT
2013
- ČERNÝ, M.; ŘEHÁK, P.; UMENO, Y.; POKLUDA, J., 2013: Stability and strength of covalent crystals under uniaxial and triaxial loading from first principles. JOURNAL OF PHYSICS-CONDENSED MATTER 25(3), p. 35401 - 8, doi: 10.1088/0953-8984/25/3/035401; FULL TEXT
- ČERNÝ, M.; ŠESTÁK, P.; POKLUDA, J.; ŠOB, M., 2013: Shear instabilities in perfect bcc crystals during simulated tensile tests. ; FULL TEXT
- ČERNÝ, M., 2013: Theoretical strength under multiaxial loading. , p. 13 - 1; FULL TEXT
- ČERNÝ, M.; ŠESTÁK, P.; POKLUDA, J.; ŠOB, M., 2013: Shear instabilities in perfect bcc crystals during simulated tensile tests. PHYSICAL REVIEW B 87(1), p. 14117 - 4, doi: 10.1103/PhysRevB.87.014117; FULL TEXT
2012
- ČERNÝ, M.; ŠESTÁK, P.; POKLUDA, J., 2012: Strength of bcc crystals under combined shear and axial loading from first principles. COMPUTATIONAL MATERIALS SCIENCE 55(1), p. 337 - 7, doi: 10.1016/j.commatsci.2011.11.009; FULL TEXT
- ŘEHÁK, P.; ČERNÝ, M.; POKLUDA, J., 2012: Phonon stability of fcc crystals under hydrostatic loading. , p. 37 - 1; FULL TEXT
- ŘEHÁK, P.; ČERNÝ, M.; POKLUDA, J., 2012: Phonon stability of fcc crystals under hydrostatic loading. ; FULL TEXT
- ŘEHÁK, P.; ČERNÝ, M.; POKLUDA, J., 2012: Phonon stability of fcc crystals under hydrostatic loading. , p. 106 - 3; FULL TEXT
- ČERNÝ, M.; POKLUDA, J., 2012: [100] loading of fcc based nano-fibre reinforced composites. ACTA PHYSICA POLONICA A 122(3), p. 505 - 4; FULL TEXT
- ŘEHÁK, P.; ČERNÝ, M., 2012: Mechanická stabilita: diamant jako případová studie. , p. 9 - 8; FULL TEXT
- ŘEHÁK, P.; ČERNÝ, M.; POKLUDA, J., 2012: Dynamic stability of fcc crystals under isotropic loading from first principles. JOURNAL OF PHYSICS-CONDENSED MATTER 24(21), p. 215403 - 7, doi: 10.1088/0953-8984/24/21/215403; FULL TEXT
2011
- ČERNÝ, M.; ŘEHÁK, P.; POKLUDA, J., 2011: Compressive Strength of Perfect Cubic Crystals under Transverse Biaxial Stresses. , p. 187 - 5; FULL TEXT
- Cerny, M; Pokluda, J, 2011: The theoretical strength of fcc crystals under multiaxial loading. COMPUTATIONAL MATERIALS SCIENCE 50(7), p. 2257 - 2261, doi: 10.1016/j.commatsci.2011.03.002
- Rehak, P; Cerny, M; Pokluda, J, 2011: The [100] Compressive Strength of Perfect Cubic Crystals under Superimposed Biaxial Stresses. MATERIALS STRUCTURE & MICROMECHANICS OF FRACTURE 465, p. 183 - 186, doi: 10.4028/www.scientific.net/KEM.465.183
- ŠESTÁK, P.; ČERNÝ, M.; POKLUDA, J., 2011: Can twinning stabilize B19´ structure in NiTi martensite?. INTERMETALLICS 19(10), p. 1567 - 6, doi: 10.1016/j.intermet.2011.05.031; FULL TEXT
2010
- Cerny, M; Pokluda, J, 2010: The theoretical shear strength of fcc crystals under superimposed triaxial stress. ACTA MATERIALIA 58(8), p. 3117 - 3123, doi: 10.1016/j.actamat.2010.01.050
- Cerny, M; Sestak, P; Pokluda, J, 2010: Influence of superimposed normal stress on shear strength of perfect bcc crystals. COMPUTATIONAL MATERIALS SCIENCE 47(4), p. 907 - 910, doi: 10.1016/j.commatsci.2009.11.022
- Cerny, M; Pokluda, J, 2010: Ideal tensile strength of cubic crystals under superimposed transverse biaxial stresses from first principles. PHYSICAL REVIEW B 82(17), doi: 10.1103/PhysRevB.82.174106
- AMISPEC_Platforma pokročilých mikroskopických a spektroskopických technik pro nano a mikrotechnologie (TE01020233), TA ČR, 2012 - 2019
- Advanced glasses, Composites and Ceramics for high growth Industries - CoACH (642557), H2020 - Excellent science - MSCA - ITN, 2015 - 2018
- Generalization of linear elastic fracture mechanics to crack propagation problems in non-homogenous materials (15-09347S), Czech Science Foundation - Standard Grants, 2015 - 2017
- Manufacture of magnetic metamaterials using a direct entry focused ion beam (GA15-62503S), Czech Science Foundation - International Projects, 2015 - 2017
- Damage mechanisms in multiaxial cyclic loading (15-08826S), Czech Science Foundation - Standard Grants, 2015 - 2017
- Research and Development of Precision Casting Technology of Radial Wheels of New Generation Turbochargers and New Types of Gas Turbines Blades (TA 04011525), Technology Agency of the Czech Rep. - ALFA, 2014 - 2017
- Self-organized functional layers of molecular quantum bits (7AMDE005), DAAD, 2015 - 2016
- Talented postdocs for scientific excellence in physics of materials (CZ.1.07/2.2.00/030.0063), MEYS - OP Education for Competiteveness, 2012 - 2015
- Creep and oxidation properties of E110 claddings under LOCA temperature transient (TA02011025), Technology Agency of the Czech Rep. - ALFA, 2012 - 2015
- Mapping of localized plasmon resonances at nanoantennas (GAP102/12/1881), Czech Science Foundation - Standard Grants, 2012 - 2014
- Fabrication of semiconductor nanowires with optimized functional properties (GPP108/12/P699), Czech Science Foundation - Postdoc Grants, 2012 - 2014
- Fabrication of metallic nanostructures for spintronic applications (GPP102/12/P443), Czech Science Foundation - Postdoc Grants, 2012 - 2014
- Fracture behaviour prediction based on quantification of local material response (GAP108/10/0466), Czech Science Foundation - Standard Grants, 2010 - 2013
- Role of oxide dispersion in fatigue behaviour of ODS type steels (GA106/09/1954), Czech Science Foundation - Standard Grants, 2009 - 2013