Mgr. Patrnčiak Michal, PhD.

Patrnčiak, M., Vidiš, M., Staňo, Ľ., Shpetnyy, I., Roch, T., Grančič, B., Satrapinskyy, L., Ďurina, P., Mikula, M., and Plecenik, T.: Highly sensitive hydrogen gas sensor based on a capacitor-like Pt/TiO2/Pt structure with large-scale nanoporous top electrode, Inter. J. Hydrogen Energy 99 (2025) 137-145.

        1. Teng, Z.F.: Front. Chem. 13 (2025) 1586903.
        2. Zhang, C.: Adv. Sci 12 (2025) e11555.
        3. Girao, A.F.: Inter. J. Hydrogen Energy 179 (2025) 151692.
        4. Prakash, B.: Radiat. Phys. Chem. 239 (2026) 113355.
        5. Murugesan, M.: Micro Nanostruct. 209 (2026) 208430.
        6. Ren, C.Q.: Microchem. J. 221 (2026) 116863.
        7. Soltic, M.: RSC Adv. 16 (2026) 9264.

Vidiš, M., Patrnčiak, M., Moško, M., Plecenik, A., Satrapinskyy, L., Roch, T., Ďurina, P., and Plecenik T.: Gas-triggered resistive switching and chemiresistive gas sensor with intrinsic memristive memory, Sensors Actuators B 389 (2023) 133878.

            1. Lin, T.H.: Polymers 15 (2023) 4318.
            2. Qiu, P.: Chem. Engn. J. 477 (2023) 146978.
            3. Qiu, P.: Sensors Actuators B 421 (2024) 136548.
            4. Qiu, P.: ACS Applied Nano Mater. 8 (2025) 4077.
            5. Bai, H.: Chem. Engn. J. 524 (2025) 169751.
            6. Qiu, P.: Talanta 293 (2025) 128058.
            7. Li, K.F.: Nature Comm. 16 (2025) 1560.
            8. Chae, M.: Chem. Engn. J. 507 (2025) 160605.
            9. Alqahtani, B.: Materials Today 90 (2025) 563.
          10. Jiang, Y.: Sensors Actuators B 444 (2025) 138307.
          11. Dominguez, K.: Adv. Electron. Mater. 12 (2026) e00639.
          12. Chen, X.: IEEE Sensors J. 26 (2026) 1705.

Vidis, M., Shpetnyi, I.O., Roch, T., Satrapinskyy, L., Patrnciak, M., Plecenik, A., and Plecenik T.: Flexible hydrogen gas sensor based on a capacitor-like Pt/TiO2/Pt structure on polyimide foil, Inter. J. Hydrogen Energy 46 (2021) 19217-19228.

              1. Wischmeyer, T.: Inter. J. Hydrogen Energy 46 (2021) 31489.
              2. Zheng, X.: Electrochimica Acta 428 (2022) 140910.
              3. Nunes, D.: Discover Mater. 2 (2022) 2.
              4. Nakajima, T.: Sensors 22 (2022) 1996.
              5. Tang, P.: Applied System Innov. 5 (2022) 91.
              6. Li, X.: Sensors Actuators B 350 (2022) 130869.
              7. Aleksanyan, M.S.: Adv. Natural Sci 13 (2022) 035003.
              8. Samanta, S.: 22nd Inter. Conf. Solid-State Sensors, Actuators Microsyst., Transducers 2023. Kyoto, IEE Japan 2023, p. 1939.   
              9. Hu, C.: ACS Applied Bio Mater. 6 (2023) 5768.
            10. Roland, U.: Inter. J. Hydrogen Energy 48 (2023) 37550.
            11. Al-Okby, M.F.R.: SACI 2023. IEEE 2023. ISBN 979-8350-321-10-4, p. 811.
            12. Duan, Z.D.: Applied Physics Lett. 123 (2023) 172201.
            13. Lin, J.: Soft Sci 3 (2023) 2.
            14. Haidry, A.A.: Mater. Res. Bull. 167 (2023) 112415.
            15. Kim, S.: Nanomater. 13 (2023) 2563.
            16. Şakar, B.C.: Ceram. Inter. 50 (2024) 4589.
            17. Barathy T, R.: Inter. J. Hydrogen Energy 50 (2024) 878.
            18. Mohd Chachuli, S.A.: Mater. Res. Innov. 28 (2024) 365.
            19. Sun, X.: Clean 52 (2024) NIL_1-NIL_15.
            20. Nunes, D.: In: Flexible Devices Based on Metal Oxides. Amsterdam, Elsevier 2024. ISBN 978-443-216-565.
            21. Chen, W.: Inter. J. Hydrogen Energy 50 (2024) 973.
            22. Yan, Q.: Inter. J. Hydrogen Energy 54 (2024) 1179.
            23. Sun, Z.G.: Sensors Actuators B 398 (2024) 134675.
            24. Tasyurek, LB.: Inter. J. Hydrogen Energy 54 (2024) 678.
           25. Ramya, BT.: Inter. J. Hydrogen Energy 50 (2024) 878.
           26. Sakar, B.C.: Inter. J. Hydrogen Energy 50 (2024) 1197.
           27. Zhang, C.: Adv. Sci 12 (2025) e11555.
           28. Qiu, P.L.: Talanta 293 (2025) 128058.
           29. Li, H.: J. Alloys Comp. 1016 (2025) 179016.
           30.Ng, D.K.T.: IEEE Inter. Electron Dev. Meeting, IEDM 2025.
           31. Long, X.C.: Sensors 26 (2026) 1400.