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LISTA PUBLIKACJI NAUKOWYCH


2026

  1. Komorowska G., Haj Ibrahim S., Wejrzanowski T., Microstructural and chemical design of materials for molten carbonate fuel cells: recent progress and challenges. Bulletin of the Chemical Society of Japan, 2026, 99(8), uoag093

  2. Kwaśniak P., Sobczak C., Strak P., Prima F., Ab-initio guided design of TRIP/TWIP titanium alloys for enhanced yield strength. Materials Research Letters, 2026, 14(6), pp. 756–763

  3. Kosarava K., Widomski P., Ziȩtala M., Muzyk M., Wysocki B., Machine Learning-Assisted Optimisation of the Laser Beam Powder Bed Fusion (PBF-LB) Process Parameters of H13 Tool Steel Fabricated on a Preheated to 350∘C Building Platform. Materials, 2026, 19(1), 210

  4. Ledwaba T., Wysocki B., Chmielewska-Wysocka A.,  Steenkamp C., Du Plessis A., Porosity Evolution and Crack Formation in NiTi Under Varying Laser Powder Bed Fusion Parameters. Material Design and Processing Communications 2026, 2026 (1), 5678273

  5. Kuczyńska-Zemła D. ,Lavisse L. , Zemła M.R., Jouvard J., Wieciński P., Bazarnik P., Berger P., Optasanu V., Sorieul S., Jouve J., Herbst F., Marco de Lucas M., Nitrogen enrichment of Timetal 834 via laser surface treatment for improved high-temperature oxidation resistance: A proof of concept. Surface and Coatings Technology, 2026,  536, 133796

  6. Golasiński K., Brodecki A. Ranachowski Z., Tasaki W., Pieczyska E., Hee Young K., Monitoring of Ti-25Nb and Ti-25Nb-1O shape memory alloys in the initial stage of tensile deformation by combined techniques of acoustic emission and digital image correlation, Archives of Civil and Mechanical Engineering, 2026, 26(1), 10

  7. Golasińki K., Maj M., Musiał S., Tasaki W., Hee Young K., Significant Temperature Change and Inhomogeneous Tensile Deformation of Superelastic Ti–26Nb, Ti–25Nb–0.3O and Ti–25Nb–0.3N Shape Memory Alloys, Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, 2026, 57(1)

  8. Parga Montemayor R., Lopez Cuellar E., Golasiński K., Lopez-Pavon L., Reyes-Osorio L., Hee Young K., Modeling of superelastic implant structures made of biomedical oxygen-added Ti–25Nb based shape memory alloys, Journal of the Mechanical Behavior of Biomedical Materials, 2026, 173, 107248

2025

  1. Kuczyńska-Zemła D, Marco de Lucas M.C., Lavisse L., Zemła M.R., Herbst F. Pacorel V, Kwaśniak P.,Microstructural influence on high-temperature oxidation of near-α titanium alloys: Timetal 834 and 6242S,Corrosion Science Article 2025, IF=8,5, MNiSW=140

  2. Dumas, L. Malet, G. Martin, P. Kwaśniak, F. Prima, S. Godet, Exploring the strength-ductility space of Ti-6Al-4V through a quenching and partitioning approach. Materials Science and Engineering: A, 2025, 925,147859, IF= 7.0 , MNiSW=140

  3. Idaszek J, Heljak M, Szlązak K, Jankowski K, Chmielewska-Wysocka A, Wysocki B, Skalski K, Święszkowski W, Mimicking Nature: Effect of Architectural Design Inspired by Cancellous Bone on the Biological Response of hMSC Cultured on Titanium Scaffolds Fabricated by Laser Beam Powder Bed Fusion, Journal of Biomedical Materials Research Part A, 2025, 113(1), e37860, IF=3,9, MNiSW=100

  4. Kwaśniak, P., Delannoy, S., Vermaut, P., Sun F., Zemła M. R., Zakharava, T., Prima, F., Microalloying as a key strategy to maximize the strength–ductility combination in dilute titanium alloys,  Materials Research Letters, 2025

  5. Sobczak C, Kwaśniak P, Strak  P, Muzyk M, Krukowski Stanisław. Elastic Anisotropy in BCC Ti-X Alloys (X = V, Nb, Ta) Determined from First Principles. Materials, 2025, 18 (18), 4294

  6. Haj Ibrahim S, Koszelow D, Makowska M, Molin S, Modeling of microstructure evolution during high-temperature oxidation of porous Fe-Cr steels. Materials and Design, 2025, 249, 113536

  7. Kuczyńska-Zemła  D. ,Pura J. ,Ostrowski R. ,Garbacz H., Wear properties of CP-Ti after surface functionalization with Direct Laser Interference Patterning, Wear, 2025, 580-581, 206284

  8. Zemła M. R. , Wróbel J.,  Wejrzanowski T., Elastic dipole tensors and relaxation volumes of He impurities in concentrated random Fe-Cr alloys, Computational Materials Science, 2025, 260, 114247

2024

  1. B. Wysocki, A. Chmielewska-Wysocka, P. Maj, R. M. Molak, B. Romelczyk-Baishya, Ł. Żrodowski, M. Ziętala, W. Nowak, W. Święszkowski, M. Muzyk, Mechanical Properties of Ti Grade 2 Manufactured Using Laser Beam Powder Bed Fusion (PBF-LB) with Checkerboard Laser Scanning and In Situ Oxygen Strengthening, Crystals 14 (6), 574 (2024), IF = 2,4, MNiSW=70

  2. K. Cwieka, B. Wysocki, J. Skibinski, A. Chmielewska, W. Swieszkowski, Numerical design of open-porous titanium scaffolds for Powder Bed Fusion using Laser Beam (PBF-LB), J. Mech. Behav. 151, 106359 (2024). MNiSW=140

  3. K. M. Golasiński, M. Maj, W. Tasaki, E.A. Pieczyska, H.Y. Kim Full-Field Deformation Study of Ti–25Nb, Ti–25Nb–0.3O and Ti–25Nb–0.7O Shape Memory Alloys During Tension Using Digital Image Correlation, Metall. Mater. Trans. A 55, 2509–2518 (2024). IF=2,5, MNiSW=200

  4. D. M. Jarząbek, M. Włoczewski, M. Milczarek, P. Jenczyk, N. Takesue, K. Golasiński,
    E.A. Pieczyska,
    Deformation Mechanisms of (100) and (110) Single-Crystal BCC Gum Metal Studied by Nanoindentation and Micropillar Compression, Metall. Mater. Trans. A 55, 4954–4964 (2024). IF=2,5, MNiSW=200

  5. Kowalczyk, A. Sotniczuk, D. Kuczyńska-Zemła, J. Pura, Z. Xu, A.R. Boccaccini, H. Garbacz, Tailoring the adhesion of electrophoretic chitosan/bioactive glass coatings by the combined surface pre-treatments of Ti substrates, Surface and Coatings Technology 481, 130645 (2024). IF=6,1, MNiSW=100

  1. P. Kwaśniak, O. Dumas, L. Malet, M. Muzyk, M. R. Zemła, S. Godet, F. Prima, Atomic scale mechanism of reorientation induced plasticity in titanium alloys – experimental and first principles investigation of the mobile {13-41} interfaces, Materials & Design 242, 112 947 (2024). IF=7,9, MNiSW=140

  2. O. Dumas, L. Malet, P. Kwaśniak, F. Prima, S. Godet, Design rules to develop solute lean α+β titanium alloys exhibiting high work-hardening by reorientation induced plasticity, Materials Science and Engineering: A 890, 145935 (2024). IF=7,0, MNiSW=140

  3. J. Idaszek, B. Wysocki, E. Ura-Bińczyk, A. Dobkowska, W. Nowak, Akiko Yamamoto, GD Sulka, Wojciech Święszkowski, Graded or random – Effect of pore distribution in 3D titanium scaffolds on corrosion performance and response of hMSCs, Biomater. Adv. 163, 213955 (2024). IF=12,9, MNiSW=20

  4. Antolak-Dudka, A., Czujko, T., Durejko, T., Stępniowski, W.J., Ziętala, M., Łukasiewicz, J. Comparison of the Microstructural, Mechanical and Corrosion Resistance Properties of Ti6Al4V Samples Manufactured by LENS and Subjected to Various Heat Treatments (2024) Materials, 17 (5), art. no. 1166. IF=3,2, MNiSW=140

  5. Pęczkowski, P., Zachariasz, P., Zalecki, R., Piętosa, J., Michalik, J.M., Jastrzębski, C., Ziętala, M., Zając, M., Gondek, Ł. Influence of polyurethane skeleton on structural and superconducting properties of Y-123 foams (2024) Journal of the European Ceramic Society, 44 (10), pp. 5722-5730. IF=6,2, MNiSW=140

  6. Golasiński, K.M., Maj, M., Urbański, L., Staszczak, M., Gradys, A., Pieczyska, E.A., Experimental study of thermomechanical behaviour of Gum Metal during cyclic tensile loadings: the quantitative contribution of IRT and DIC, Quantitative Infrared Thermography Journal, 2024, 21(4), pp. 259–276, IF=3,7, MNiSW=140

  7. Kuczyńska-Zemła D., Rogalska M., Sotniczuk A., Kijeńska-Gawrońska E., Walejewska E., Chlanda A., Majchrowicz K., Staniszewska M., Garbacz H. A novel approach to enhance mechanical properties of Ti substrates for biomedical applications, Journal of Alloys and Compounds, 2024, 970, 17245, IF=6,3, MNiSW=100

  8. Chmielewska A., NiTi in situ alloying in powder-based additive manufacturing, Progress in Additive Manufacturing, 2024, 9(6), pp. 1775–1785. IF=5,4, MNiSW=20

  9. Khattab, N.R., Olivas-Alanis, L.H., Chmielewska-Wysocka, A., Emam H, Brune R, Jahadakbar A, Khambhampati S, Lozier J, Safaei K, Skoracki R, Elahinia, M., Dean, D. Evaluation of stiffness-matched, 3D-printed, NiTi mandibular graft fixation in an ovine model, Biomedical Engineering Online, 2024, 23(1), 105. IF=2,9, MNiSW=70

  10. Chmielewska A., Dean D, The role of stiffness-matching in avoiding stress shielding-induced bone loss and stress concentration-induced skeletal reconstruction device failure, Acta Biomaterialia, 2024, 173, pp. 51–65. IF=9,6, MNiSW=140

  11. Sanguedolce, M., Abdelmaola, M., Borda, F. Cho D H, Avery T, Olivas-Alanis L H. Chmielewska A. , Vivek A, Daehn G, Luo A, Panton B, Filice, L., Dean, D., On the impact welding of dissimilar alloys for use in multimaterial skeletal fixation devices , Materials Research Proceedings, 2024, 41, pp. 1732–1740. IF=0,42, MNiSW=20

2023

  1. Dumas, O., Malet, L., Kwaśniak, P., Prima, F., Godet, S. Reorientation Induced Plasticity (RIP) in high-strength titanium alloys: An insight into the underlying mechanisms and resulting mechanical properties. Acta Materialia, 2023, 246, 118679. IF=9,3, MNiSW=200

  2. Kwaśniak, P., Delannoy, S., Prima, F., Clouet, E. Competition between prismatic and basal slip in hexagonal titanium–aluminum alloys with short-range order. Materials Research Letters, 2023,11(6),pp.407–413.IF=8,6,MNiSW=140

  3. C. Sobczak, P. Kwaśniak, M. Muzyk, P. Strak, F. Prima, Introduction to elastically isotropic β-Ti alloys, (2023) Computational Materials Science, 230, 112496. IF=3,3, MNiSW=100

  4. Golasiński, K. M., Staszczak, M., Pieczyska, E.A., Energy Storage and Dissipation in Consecutive Tensile Load-Unload Cycles of Gum Metal, Materials, 2023, 16(9), 3288. IF=3,2, MNiSW=140

  5. P. Kwaśniak, P. Fedorov, M. Muzyk, J.S. Wróbel, H. Garbacz, Interaction of O, N, C and H interstitials with screw dislocations in hexagonal titanium, Materials Science and Engineering A, 875, 145070 (2023). IF=7,0, MNiSW=140

  6. Staszczak, M., Gradys, A, Golasiński, K.M., Pieczyska, E.A.A., Polyurethane shape memory polymer: structure characterization and estimation of energy storage and dissipation during the tension process, Bulletin of the Polish Academy of Sciences Technical Sciences, 2023, 71(6), e147343. IF= 1,2, MNiSW=100

  7. Kuczyńska-Zemła D, Pura, J., Przybyszewski, B., Pisarek, M., Garbacz, H., A comparative study of apatite growth and adhesion on a laser-functionalized titanium surface, Tribology International, 2023, 182, 108338. IF= 6,9, MNiSW=200

  8. Kuczyńska-Zemła, D., Kwaśniak, P., Sotniczuk, A., Boll T., Chassaing D., Bazarnik P., Wiecieński P., Pisarek M., Ostrowski, R., Garbacz, H., Effect of interference laser treatment on the surface region homogeneity of a biomedical β-Ti alloy, Applied Surface Science, 2023, 607, 155038. IF=6,9, MNiSW=20

  9. Kowalczyk, A., Kuczyńska-Zemła, D., Sotniczuk, A., Anuszewska, K., Garbacz, H.Tailoring Ti Grade 2 and TNTZ alloy surfaces in a two-step mechanical–chemical modification. Surface Engineering, 2023, 39(6), pp. 666–676. IF=2,8, MNiSW=70

  10. Sotniczuk A., Kuczyńska-Zemła D., Majchrowicz K., Kijeńska-Gawrońska E. Tailoring mechanical and surface properties of UFG CP-Ti by the low-temperature annealing, Surface Engineering, 2023, 39(6), pp. 666-676. IF=2,8, MNiSW=70

  11. Zemła M., Michałowski S, Prociak A, Synthesis and Characterization of Flame Retarded Rigid Polyurethane Foams with Different Types of Blawing Agents, Materials, 2023, 16 (22), 7217. IF=3,2, MNiSW=140

  12. Żrodowski, Ł., Wróblewski, R., Leonowicz, M., Morończyk B, Choma T, Ciftci J, Święszkowski W, Dobkowska A, Ura-Bińczyk E, Błyskun P, Jaroszewicz J, Krawczyńska A, Kulikowkski K, Wysocki B, Cetner T, Moneta G, Li X, Yuan L, Małachowska A, Chulist, R., Żrodowski, C. How to control the crystallization of metallic glasses during laser powder bed fusion? Towards part-specific 3D printing of in situ composites, Additive Manufacturing, 2023, 76, 103775. IF=11,1, MNiSW=200

  13. Majchrowicz, K., Chmielewska, A., Wysocki, B., Przybysz-Gloc S, Kulczyk M, Garbacz, H., Pakieła, Z., The Effect of Microstructural Defects on High-Cycle Fatigue of Ti Grade 2 Manufactured by PBF-LB and Hydrostatic Extrusion, Crystals, 2023, 13(8), 1250. IF=2,4, MNiSW=70

2022

  1. Chmielewska, A., Wysocki, B.A., Gadalińska, E., MacDonald E, Adamczyk-Cieślak B, Dean, D., Świeszkowski, W., Laser powder bed fusion (LPBF) of NiTi alloy using elemental powders: the influence of remelting on printability and microstructure, Rapid Prototyping Journal, 2022, 28(10), pp. 1845–1868. IF=3,6, MNiSW=100

  2. Chmielewska, A., Jahadakbar, A., Wysocki, B., Elahinia M, Świȩszkowski, W., Dean, D. Chemical Polishing of Additively Manufactured, Porous, Nickel-Titanium Skeletal Fixation Plates, 3D Printing and Additive Manufacturing, 2022, 9(4), pp. 269–277. IF=2,1, MNiSW=100

  3. Pisarek, M., Ambroziak, R., Hołdyński, M., Roguska A, Majchrowicz A, Wysocki, B., Kudelski, A., Nanofunctionalization of Additively Manufactured Titanium Substrates for Surface-Enhanced Raman Spectroscopy Measurements, Materials, 2022, 15(9), 3108. IF=3,2, MNiSW=140

  4. Chmielewska, A., Wysocki, B., Kwaśniak, P., Kruszewski M J, Michalski B, Zielińska A, Adamczyk-Cieślak B, Krawczyńska A, Buhagiar, J., Święszkowski, W., Heat Treatment of NiTi Alloys Fabricated Using Laser Powder Bed Fusion (LPBF) from Elementally Blended Powders, Materials, 2022, 15(9), 3304. IF=3,2, MNiSW=140

  5. Chmielewska, A., Wysocki, B., Buhagiar, J., Michalski B, Adamczyk-Cieślak B, Gloc, M., Święszkowski, W., In situ alloying of NiTi: Influence of laser powder bed fusion (LBPF) scanning strategy on chemical composition, Materials Today Communications, 2022, 30, 103007. IF=4,5, MNiSW=70

  6. Shaqour, B., Górecka, Chmielewska, A., Wysocki B, Heljak M, Gernaey M, Verleije B, Beyers K, Vervaet Ch, Choińska E, Święszkowski, W., Cos, P., Novel design for an additively manufactured nozzle to produce tubular scaffolds via fused filament fabrication, Additive Manufacturing, 2022, 49, 102467. IF=11,1, MNiSW=200

  7. Sotniczuk, A., Majchrowicz, K., Kuczyńska-Zemła, D., Pisarek, M., Adamczyk-Cieślak, B., Garbacz H., Surface Properties and Mechanical Performance of Ti-Based Dental Materials: Comparative Effect of Valve Alloying Elements and Structural Defects, Metallurgical and Materials Transactions A Physical Metallurgy and Materials Science, 2022,53 (1), pp. 225-239. IF=2,5, MNiSW=200

  8. Zemła M, Prociak A, Michałowski, S., Bio-based rigid polyurethane foams modified with phosphorus flame retardants, Polymers, 2022, 14 (1) 102. IF=4,9, MNiSW=100

2021

  1. Kisiel, R., Śpiewak, P., Kruszewski, M.J., (SLID technology in assembly GaN-on-Si chips on Cu substrate | Technologia SLID w montażu GaN-on-Si do podłoży Cu, Przegląd Elektrotechniczny, 2021, 97 (3), pp. 60-63

  2. Sattigeri, R.M., Gajaria, T.K., Jha, P.K., Śpiewak, P., Kurzydłowski, K.J., Emergence of -s, -p-d band inversion in zincblende gold iodide topological insulator and its thermoelectric properties, Journal of Physics Condensed Matter , 2021, 33(15), 155402

  3. Kisiel, R., Śpiewak, P., Kruszewski, M.J., Ag-based Thermal Interface Materials for GaN-on-Si Assembly Chips in Power Applications, Proceedings of the International Spring Seminar on Electronics Technology, 2021-May, 9467637

  4. Dalsaniya, M.H., Gajaria, T.K., Som, N.N., .Iha, P.K., Śpiewak, P., Kurzydłowski, K.J.Type-II GeAs/GaSe heterostructure as suitable candidate for solar power conversion efficiency, Solar Energy, 221, 223, pp.87-99

  5. Regulski, P., Wendykier, P., Kantiem, K., Murdzek, W., Advanced methods of visual analysis and visualization of various aspects of the COVID-19 outbreak in Poland, Procedia Computer Science,  2021, 192, pp. 4194–4199

  6. Regulski, P.A., Editorial for “Prognosis Prediction in Initially Diagnosed Multiple Myeloma Patients Using Intravoxel Incoherent Motion Diffusion-Weighted Imaging and Multiecho Dixon Imaging” Journal of Magnetic Resonance Imaging , 2021, 53(2), pp. 502–503

  7. Brudnicki, A., Regulski, P.A., Sawicka, E., Fudalej, P.S , Alveolar volume following different timings of secondary bone grafting in patients with unilateral cleft lip and palate. A pilot study, Journal of Clinical Medicine,  2021, 10(16), 3524

  8. Dunin-Keplicz, P., Iwanski, M., Niezgódka, M., Wiśniewski, P., Architectural aspects of a data-intensive system: A covid-19 related case study, Procedia Computer Science,  2021, 192, pp. 3580–3589