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Új, ultra-mikro méretű ionszelektív elektródokat alkalmazó pásztázó elektrokémiai mikroszkópiás (PEKM) módszerek kidolgozása és alkalmazása egyes korróziós folyamatok sajátságainak felfedezésére
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súgó
nyomtatás
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Ezen az oldalon az NKFI Elektronikus Pályázatkezelő Rendszerében nyilvánosságra hozott projektjeit tekintheti meg.
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A. Asserghin, M. M-Kosanović , L. Nagy, G.Nagy,: In situ monitoring of the transpassivation and repassivation of the passive film on nitinol biomaterial by scanning electrochemical microscopy, Electrochemistry Communications ? (2019) 1–4, 2019 | A. Asserghine, A. M. Ashrafi, A. Mukherjee, F. Petrlak, Z. Heger, P. Svec, L. Richtera, L. Nagy, R. M. Souto, G. Nagy, V. Adam: , In Situ Investigation of the Cytotoxic and Interfacial Characteristics of Titanium When Galvanically Coupled with Magnesium Using Scanning Electrochemical Microscopy, ACS Appl. Mater. Interfaces 13 (2021), 43587−43596, 2021 | D. Filotas, L. Nagy, G. Nagy, R.M. Souto: New insights on the influenceof aluminum on the anomalous hydrogen evolution of anodized magnesium using scanning electro-chemical Microscopy, Electrochimica Acta 391(2021), 138915, 2021 | D. Filotás, B.M. Fernández-Pérez, L. Nagy, G. Nagy, R.M. Souto,: Investigation of anomalous hydrogen evolution from anodized magnesium using a polarization routine for scanning electrochemical microscopy, J. of Electroanal. Chem. 895, (2021), 115538, 2021 | J. S Ben, A. El Guerraf, A. Kiss, A. El Azrak , E.A. Bazzaoui, R.Wang, J.I. Martins, M Bazzaoui,: Analyses of scanning electrochemical microscopy and electrochemical impedance spectroscopy in direct methanol fuel cells: permeability resistance and proton conductivit, J. Solid State Electrochem, 24 (2020) 1551-1565, 2020 | L. K. Muthuri, L. Nagy, G. Nagy,: Chronopotentiometric method for assessing antioxidant activity: A reagentless measuring technique, Electrochem. Commun. 122 (2021) 106907, 2021 | D.Filotás, J. Izquierdo, B. M. Fernández-Pérez, L. Nagy, G. Nagy, R. M. Souto: Contributions of Microelectrochemical Scanning Techniques for the Efficient Detection of Localized Corrosion Processes at the Cut Edges of Polymer-Coated Galvanized Steel, Molecules, 27 (2022), 2167.(17pages) https://doi.org/10.3390/molecules27072167, 2022 | L. K. Muthuri, L. Nagy, G. Nagy,: Evaluating the antioxidant activity of different species using a novelreagentless chronopotentiometric method,, Electrochemistry Communications, 139 (2022) 107311, https://doi.org/10.1016/j.elecom.2022.107311, 2022 | A. Asserghine, ✉ , D. Filotás, L. Nagy, R. M. Souto ,G. Nagy npj Material s Degradation (2022)6:57 IF: 6.042021, ; https://doi.org/10.1038/s41529-022-00270-0: Do titanium biomaterials get immediately and entirely repassivated? A perspective, npj Material s Degradation (2022)I6:57 ; https://doi.org/10.1038/s41529-022-00270-0, 2022 | D. Filotás, A. Asserghine, T. Nagy, L. Asztalos, F. Kovács, J. Dobránszky, L. Nagy, G. Nagy: Nickel coated graphite microparticle based electrodes for carbon dioxide reduction in monoethanolamine medium,, Electroanalysis, 33 (2021) 208-215, 10.1002/elan.202060037, 2021 | Z. Meiszterics, A, Kiss, D. Filotás, A. Abdelilah, L. Nagy, G. Nagy: Pásztázó Elektrokémiai Mikroszkópiás (PEKM) módszer fejlesztése és alkalmazása korróziós folyamatok tanulmányozására, Development of scanning electrochemical microscopy, Magy. Kém. Foly. 128 (2022/) 79-85, DOI: 10.24100/MKF.2022.02.79, 2022 | A.Asserghine, M. Medvidović-Kosanović, A. Stanković, L. Nagy, R. M. Souto, G. Nagy,: A scanning electrochemical microscopy characterization of the localized corrosion reactions occurring on nitinol in saline solution after anodic polarization, Sensors and Actuators B: Chemical, accaepted,, 2020 | A.Asserghine, M.Medvidović-Kosanović, L.Nagy, R. M.Souto, G.Nagy,: A study of the electrochemical reactivity of titanium under cathodic polarization by means of combined feedback and redox competition modes of scanning electrochemical mi, Sensors and Actuators B: Chemical, 320(2020) 128339, https://doi.org/10.1016/j.snb.2020.128339, 2020 | D. Filotas, B.M. Fernandez-Perez, L. Nagy, G. Nagy, R.M. Souto,: A novel Scanning Electrochemical Microscopy strategy for the investigation of anomalous hydrogen evolution from AZ63 magnesium alloy, Sensors and Actuators: B. Chemical (Accepted paper), DOI: https://doi.org/10.1016/j.snb.2020.127691, 2020 | Z. Meiszterics, A. Asserghine, A. Kiss, L. Nagy, T. Zsebe, G. Nagy,: Scanning Electrochemical Potentiometric Scanning Electrochemical Microscopy (SECM) investigation of 3D printed parts produced by CMT welding technology, Electroanalysis 2020 (accepted paper) DOI: 10.1002/elan.201900678, 2020 | A. Stanković, Ž. Kajinić, J.V. Turkalj, Ž. Romić, M. D. Sikirić, A. Asserghine, G. Nagy, M. Medvidović-Kosanović: Voltammetric determination of arsenic with modified glassy carbon electrode, Electroanalysis (2020)10.1002/elan.201900666, 2020 | D. Filotás, B.M. Fernández-Pérez, L. Nagy, G. Nagy, R.M. Souto, Multi-barrel electrodes containing an internal micro-reference for the improved visualization of galvanic corrosion processes in magnesium-based materials using potentiometric scanning electrochemical microscopy,: Multi-barrel electrodes containing an internal micro-reference for the improved visualization of galvanic corrosion processes in magnesium-based materials using potentiom, SENSORS AND ACTUATORS B-CHEMICAL (0925-4005 ): 296 p. 126625. Paper 126625. (2019, 2019 | . A. Asserghine , M. M-Kosanović , L. Nagy, G.Nagy, Electrochemistry Communications ? (2019) 1–4, IF 4.3962017: In situ monitoring of the transpassivation and repassivation of the passive film on nitinol biomaterial by scanning electrochemical microscopy, Electrochemistry Communications, 107, October 2019, 106539, 2019 | S. J. Keszei, Sz. Balogh, Cs. Fehér, L. Nagy, N. Tumanov, J. Wouters, Gy. Lendvay, R. Skoda-Földes: Molecular recognition of strong acids by a 2‐ureido‐4‐ferrocenyl pyrimimidine receptor, Eur. J. of Inorg. Chem. https://doi.org/10.1002/ejic.201900803,, 2019 | D. Filotás, A. Asserghine, T. Nagy, L. Asztalos, F. Kovács, J. Dobránszky, L. Nagy, G. Nagy: Nickel coatedgraphite microparticle based electrodes for carbon dioxide reduction in monoethanolamine medium, Electroanalysis, 10.1002/elan.202060037 (Accepted paper), 2020 | D. Filotés, T. Nagy, L. Nagy,* P. Mizsey, G. Nagy: Extended Investigation of Electrochemical CO2Reduction in Ethanolamine Solutions by SECM, Electroanalysis 30 (2018) 690 – 697, 2018 | Asserghine A, Filotás D, Nagy L, Nagy G: Scanning electrochemical microscopy investigation of the rate of formation of a passivating TiO2 layer on a Ti G4 dental implant, ELECTROCHEM COMMUN 83: 33-35, 2017 | Dániel Filotás, B M Fernández-Pérez, J Izquierdo, András Kiss, Lívia Nagy, Géza Nagy, R M Souto: Improved potentiometric SECM imaging of galvanic corrosion reactions, CORROS SCI 129: 136-145, 2017 | D. Filotás,B. M. Fernandez-Perez,A. Kiss, L. Nagy, G. Nagy, R. M. Souto: Double Barrel Microelectrode Assembly to Prevent Electrical Field Effects in Potentiometric SECM Imaging of Galvanic Corrosion Processes, Journal of The Electrochemical Society, 165(5) C270-C277 (2018), 2018 | A. Asserghine, D. Filotás , B. Németh, L. Nagy, Géza Nagy: Potentiometric scanning electrochemical microscopy for monitoring the pH distribution during the self-healing of passive titanium dioxide layer on titanium dental root im, Electrochemistry Communications 95 (2018) 1–4, 2018 |
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