| N. Amirjani, E. Entezari, J.A. Szpunar, A.G. Odeshi, A. Bag, M. Rashid, “Experimental study of microstructural pathways for hydrogen-induced damage in X80 line Pipe Steel Weld,” Engineering Failure Analysis (2025) 110257. doi:10.1016/j.engfailanal.2025.110257 . |
| M.R. Toroghinejad, V. Yousefi Mehr, Z. Noohi, H. Asgari, J. Szpunar, “Evolution of rotated cube texture and its influence on the mechanical and fracture properties of Al/Ti/alumina composites fabricated via ARB,” Metallography, Microstructure, and Analysis (2025). doi:10.1007/s13632-025-01272-5 . |
| S. Yadav, J.F. Cabezas, A.K. Singh, R.K. Davani, J. Szpunar, “Role of microstructure, crystallographic texture, and different acidic environments on the electrochemical corrosion of X70 pipeline steels,” Journal of Materials Engineering and Performance (2025). doi:10.1007/s11665-025-12168-4 . |
| R. Khatibzadeh Davani, E. Entezari, J.A. Szpunar, “Microstructural observations of X70 pipeline steels evaluated by hydrogen permeation and drop weight tear tests to propose a statistically based, cost-effective model,” Journal of Materials Engineering and Performance (2025). doi:10.1007/s11665-025-12122-4 . |
| T.A. Jack, D. Sidhik, A.K. Singh, F. Fazeli, J. Szpunar, “Influence of microstructure on hydrogen uptake and desorption in pipeline steels: Gaseous vs electrochemical charging,” Metallurgical and Materials Transactions A, 56 (2025) 5058–5075. doi:10.1007/s11661-025-07968-1 . |
| M. Nnoka, O. Faye, T.A. Jack, J. Szpunar, “Experimental and density functional theory investigation of grain boundary character on oxide layer growth in pipeline steel under acidic environment,” Journal of Materials Engineering and Performance (2025). doi:10.1007/s11665-025-11969-x . |
| M. Nnoka, T.A. Jack, S. Yadav, J. Szpunar, “Role of grain size on the corrosion resistance of pipeline steels in acidic environment,” Journal of Materials Science: Materials in Engineering, 20 (2025). doi:10.1186/s40712-025-00240-9 . |
| B. Szpunar, J.A. Szpunar, “DFT studies of electronic properties and swelling of selected high density fuels,” The Minerals, Metals & Materials Series (2025) 1499–1509. doi:10.1007/978-3-031-80748-0_132 . |
| B. Szpunar, J.I. Ranasinghe, J.A. Szpunar, “Density functional theory-based study of UC2 and CR-doped UO2,” Metals, 15 (2025) 727. doi:10.3390/met15070727 . |
| A. Prasad, M.K. Tummalapalli, L. Malakkal, L. Bichler, J. Szpunar, C. Liu, “Master (spark plasma) sintering curve of UO2 and UO2-10 vol. % mo fuel material,” Journal of Nuclear Engineering and Radiation Science, 11 (2025). doi:10.1115/1.4068390 . |
| T.A. Jack, F. Fazeli, J. Szpunar, “Equivalence of hydrogen uptake in X70 pipeline steel via gaseous and electrochemical charging,” International Journal of Hydrogen Energy, 123 (2025) 150–161. doi:10.1016/j.ijhydene.2025.03.398 . |
| E. Entezari, A.K. Singh, H. Mousavi, J.L. Velazquez, J. Szpunar, “A cost-effective model for synergistic effects of microstructure and crystallographic texture on hydrogen-induced crack growth and corrosion rates in pipeline steels,” Materials Characterization, 223 (2025) 114917. doi:10.1016/j.matchar.2025.114917 . |
| T.A. Jack, J. Szpunar, “Direct observation of the influence of grain orientation on the corrosion of Pipeline Steels,” Materials Characterization, 222 (2025) 114836. doi:10.1016/j.matchar.2025.114836 . |
| T.A. Jack, M.A. Webb, K.M.M. Rahman, F. Fazeli, J. Szpunar, “Hydrogen uptake and embrittlement behavior in pipeline steels: Insights from slow strain rate testing and synchrotron micro-ct imaging,” Engineering Failure Analysis, 172 (2025) 109419. doi:10.1016/j.engfailanal.2025.109419 . |
| T.A. Jack, F. Fazeli, J. Szpunar, “Thermal desorption analysis of hydrogen uptake in pipeline steels after gaseous and electrochemical charging,” Journal of Materials Science, 60 (2025) 2580–2606. doi:10.1007/s10853-024-10571-1 . |
| A. Ghandi, M. Shamanian, J. Kangazian, P. Verdi, J.A. Szpunar, “Characterization of microstructure–mechanical properties relationship in dissimilar resistance spot welding of the advanced high-strength steel DP590 Steel to the interstitial-free steel DC 06: EBSD Study,” Journal of Materials Engineering and Performance, 34 (2025) 10297–10308. doi:10.1007/s11665-024-098308 . |