World's Best Scientists 2026 revealed!

D-Index & Metrics

Materials Science

D-Index
48
Citations
7783
World Ranking
10891
National Ranking
2

Overview

Ján Dusza is affiliated with the Slovak Academy of Sciences in Slovakia and specializes in research within the fields of Engineering and Materials Science. Their work predominantly falls under subfields such as Mechanical Engineering, Mechanics of Materials, Materials Chemistry, Ceramics and Composites, and Aerospace Engineering.

The scientist's research focuses on topics including advanced materials and composites, metal and thin film mechanics, advanced ceramic materials synthesis, high entropy alloys studies, high-temperature coating behaviors, aluminum alloys composites properties, and diamond and carbon-based materials research.

Notable recent papers authored or co-authored by Ján Dusza include:

  • "Nanoindentation and tribology of a (Hf-Ta-Zr-Nb-Ti)C high-entropy carbide," 2021, Journal of the European Ceramic Society
  • "Enhanced Hardness in High-Entropy Carbides through Atomic Randomness," 2020, Advanced Theory and Simulations
  • "Synthesis, microstructure, and mechanical properties of novel high entropy carbonitrides," 2022, Acta Materialia
  • "Low-loss high entropy relaxor-like ferroelectrics with A-site disorder," 2020, Journal of the European Ceramic Society
  • "Mechanical and tribological properties of TiB2-SiC and TiB2-SiC-GNPs ceramic composites," 2020, Journal of the European Ceramic Society

Frequent collaborators in their research include Alexandra Kovalčíková, Tamás Csanádi, Dávid Medveď, Richard Sedlák, and Marek Vojtko.

Ján Dusza's publications are often featured in well-represented venues such as the Journal of the European Ceramic Society, Ceramics International, Open Ceramics, Journal of Alloys and Compounds, and Materials.

Best Publications

  • Processing and Properties of High-Entropy Ultra-High Temperature Carbides

    Elinor Castle;Tamás Csanádi;Salvatore Grasso;Ján Dusza

  • Fracture toughness and toughening mechanisms in graphene platelet reinforced Si3N4 composites

    Lenka Kvetková;Annamária Duszová;Pavol Hvizdoš;Ján Dusza

  • Microstructure of (Hf-Ta-Zr-Nb)C high-entropy carbide at micro and nano/atomic level

    Ján Dusza;Peter Švec;Vladimír Girman;Richard Sedlák

  • Relationship between Microstructure, Toughening Mechanisms, and Fracture Toughness of Reinforced Silicon Nitride Ceramics

    Pavol Šajgalik;J. Dusza;M. J. Hoffmann

  • Microstructure and fracture toughness of Si3N4 + graphene platelet composites

    Ján Dusza;Jerzy Morgiel;Annamária Duszová;Lenka Kvetková

  • Orientation-dependent hardness and nanoindentation-induced deformation mechanisms of WC crystals

    Tamás Csanádi;Marek Bl’anda;Nguyen Q. Chinh;Pavol Hvizdoš

  • Tribological properties of Si3N4–graphene nanocomposites

    Pavol Hvizdoš;Ján Dusza;Csaba Balázsi

  • Microstructure and properties of carbon nanotube/zirconia composite

    Annamária Duszová;Ján Dusza;Karol Tomášek;Gurdial Blugan

  • Improved creep resistance of high entropy transition metal carbides

    Xuxu Han;Vladimir Girman;Richard Sedlak;Jan Dusza;Jan Dusza

  • Strength enhancement and slip behaviour of high-entropy carbide grains during micro-compression.

    Tamás Csanádi;Elinor Castle;Michael J. Reece;Ján Dusza

  • Hot pressed and spark plasma sintered zirconia/carbon nanofiber composites

    Ján Dusza;Gurdial Blugan;Jerzy Morgiel;Jakob Kuebler

  • Wear resistance of Al2O3–CNT ceramic nanocomposites at room and high temperatures

    Viktor Puchy;Pavol Hvizdos;Ján Dusza;Frantisek Kovac

  • Synthesis, microstructure, and mechanical properties of novel high entropy carbonitrides

    Unknown

  • Enhanced Hardness in High‐Entropy Carbides through Atomic Randomness

    Yichen Wang;Tamás Csanádi;Hangfeng Zhang;Ján Dusza

  • Nanoindentation of WC–Co hardmetals

    Annamaria Duszová;Radoslav Halgaš;Marek Bľanda;Pavol Hvizdoš

  • SiC/Si3N4 nano/micro-composite — processing, RT and HT mechanical properties

    P. Šajgalı́k;M. Hnatko;F. Lofaj;P. Hvizdoš

  • Tribological properties of silica-graphene nano-platelet composites

    Harshit Porwal;Peter Tatarko;Peter Tatarko;Richa Saggar;Salvatore Grasso

  • Nanoindentation and tribology of a (Hf-Ta-Zr-Nb-Ti)C high-entropy carbide

    Ján Dusza;Ján Dusza;Tamás Csanádi;Dávid Medveď;Richard Sedlák

  • Influence of hBN content on mechanical and tribological properties of Si3N4/BN ceramic composites

    Alexandra Kovalčíková;Ján Balko;Csaba Balázsi;Pavol Hvizdoš

  • Thermal shock resistance and fracture toughness of liquid-phase-sintered SiC-based ceramics

    Alexandra Kovalčíková;Ján Dusza;Pavol Šajgalík

  • Zirconia/carbon nanofiber composite

    Annamária Duszová;Ján Dusza;Karel Tomášek;Jerzy Morgiel

Frequent Co-Authors

Michael J. Reece
Michael J. Reece Queen Mary University of London
Salvatore Grasso
Salvatore Grasso Queen Mary University of London
Ferdinand Hofer
Ferdinand Hofer Graz University of Technology
Ralf Riedel
Ralf Riedel Technical University of Darmstadt
Michael J. Hoffmann
Michael J. Hoffmann Karlsruhe Institute of Technology
Ehrenfried Zschech
Ehrenfried Zschech Fraunhofer Society
Aldo R. Boccaccini
Aldo R. Boccaccini University of Erlangen-Nuremberg
Krishna Rajan
Krishna Rajan University at Buffalo, State University of New York
Johann Michler
Johann Michler Swiss Federal Laboratories for Materials Science and Technology
Ton Peijs
Ton Peijs University of Warwick

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Best Scientists Citing Ján Dusza

Trending Scientists

Recently Published Articles