Photo of Ferenc Tasnadi

Ferenc Tasnadi

Associate Professor, Head of Unit

Universitetslektor

Presentation

Publications

2024

Akun Liang, Israel Osmond, Georg Krach, Lan-Ting Shi, Lukas Bruening, Umbertoluca Ranieri, James Spender, Ferenc Tasnadi, Bernhard Massani, Callum R. Stevens, Ryan Stewart McWilliams, Eleanor Lawrence Bright, Nico Giordano, Samuel Gallego-Parra, Yuqing Yin, Andrey Aslandukov, Fariia Iasmin Akbar, Eugene Gregoryanz, Andrew Huxley, Miriam Pena-Alvarez, Jian-Guo Si, Wolfgang Schnick, Maxim Bykov, Florian Trybel, Dominique Laniel (2024) High-Pressure Synthesis of Ultra-Incompressible, Hard and Superconducting Tungsten Nitrides Advanced Functional Materials Continue to DOI
Shuyao Lin, Luis Casillas-Trujillo, Ferenc Tasnadi, Lars Hultman, Paul H. Mayrhofer, Davide Sangiovanni, Nikola Koutna (2024) Machine-learning potentials for nanoscale simulations of tensile deformation and fracture in ceramics npj Computational Materials, Vol. 10, Article 67 Continue to DOI
Janella Salamania, Florian Bock, L. J. S. Johnson, Ferenc Tasnadi, K. M. Calamba Kwick, Alireza Farhadizadeh, Igor Abrikosov, Lina Rogström, Magnus Odén (2024) High temperature decomposition and age hardening of single-phase wurtzite Ti1−xAlxN thin films grown by cathodic arc deposition Physical Review Materials, Vol. 8, Article 013602 Continue to DOI
Florian Bock, Ferenc Tasnadi, Igor Abrikosov (2024) Active learning with moment tensor potentials to predict material properties: Ti0.5Al0.5N at elevated temperature Journal of Vacuum Science & Technology. A. Vacuum, Surfaces, and Films, Vol. 42, Article 013412 Continue to DOI
Dominique Laniel, Florian Trybel, Andrey Aslandukov, Saiana Khandarkhaeva, Timofey Fedotenko, Yuqing Yin, Nobuyoshi Miyajima, Ferenc Tasnadi, Alena V. Ponomareva, Nityasagar Jena, Fariia Iasmin Akbar, Bjoern Winkler, Adrien Néri, Stella Chariton, Vitali Prakapenka, Victor Milman, Wolfgang Schnick, Alexander N. Rudenko, Mikhail I. Katsnelson, Igor A. Abrikosov, Leonid Dubrovinsky, Natalia Doubrovinckaia (2024) Synthesis of Ultra‐Incompressible and Recoverable Carbon Nitrides Featuring CN4 Tetrahedra Advanced Materials, Vol. 36, Article 2308030 Continue to DOI