Dr. Dorottya Hursan

Profil

Derzeitige StellungProfessor W-1 und Äquivalente
FachgebietPhysikalische Chemie von Festkörpern und Oberflächen, Materialcharakterisierung,Elektrochemie
Keywordsmechanistic understanding, electrochemistry, CO2 / CO conversion, operando methods, electrolyzer technology
Auszeichnungen

2020: Humboldt Postdoctoral Fellowship

2017: National Excellence Program for Doctoral Students (Hungary)

2015: Excellent Student of the Faculty of Science and Informatics (University of Szeged)

2015: National Excellence Program for Undergradutate Stdents (Hungary)

2015: Special Prize of the Sófi Foundation (Hungary)

Aktuelle Kontaktadresse

LandUngarn
OrtSzeged
Universität/InstitutionUniversity of Szeged
Institut/AbteilungInstitute of Physical Chemistry and Material Science
Websitehttp://www2.sci.u-szeged.hu/physchem/home.html

Gastgeber*innen während der Förderung

Prof. Dr. Beatriz Roldan CuenyaAbteilung Grenzflächenwissenschaften, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Berlin
Beginn der ersten Förderung01.07.2020

Programm(e)

2020Humboldt-Forschungsstipendien-Programm für Postdocs

Publikationen (Auswahl)

2023Dorottya Hursán, Csaba Janáky: Operando characterization of continuous flow CO2 electrolyzers: Current status and future prospects. In: Chemical Communications, 2023,
2023Andrea Martini, Dorottya Hursán, Janis Timoshenko, Martina Rüscher, Felix Haase, Clara Rettenmaier, Eduardo Ortega, Ane Etxebarria, Beatriz Roldan Cuenya: Tracking the Evolution of Single-Atom Catalysts for the CO2 Electrocatalytic Reduction Using Operando X-ray Absorption Spectroscopy and Machine Learning. In: Journal of the American Chemical Society, 145, 2023, 17351–17366
2022Dorottya Hursán, Marietta Ábel, Kornélia Baán, Edvin Fako, Gergely F Samu, Huu Chuong Nguyën, Núria López, Plamen Atanassov, Zoltán Kónya, András Sápi, Csaba Janáky: CO2 Conversion on N-Doped Carbon Catalysts via Thermo- and Electrocatalysis: Role of C–NOx Moieties. In: ACS Catalysis, 12, 2022, 10127-10140
2019Dorottya Hursán, Angelika A Samu, László Janovák, Kateryna Artyushkova, Tristan Asset, Plamen Atanassov, Csaba Janáky: Morphological attributes govern carbon dioxide reduction on N-doped carbon electrodes. In: Joule, 3, 2019, 1719-1733
2018Dorottya Hursán, Csaba Janáky: Electrochemical reduction of carbon dioxide on nitrogen-doped carbons: insights from isotopic labeling studies. In: ACS Energy Letters, 3, 2018, 722-723
2018Aaron Roy, Dorottya Hursán, Kateryna Artyushkova, Plamen Atanassov, Csaba Janáky, Alexey Serov: Nanostructured metal-NC electrocatalysts for CO2 reduction and hydrogen evolution reactions. In: Applied Catalysis B: Environmental, 232, 2018, 512-520
2018Attila Kormányos, Dorottya Hursán, Csaba Janáky: Photoelectrochemical behavior of PEDOT/Nanocarbon electrodes: fundamentals and structure–property relationships. In: The Journal of Physical Chemistry C, 122, 2018, 13682-13690
2016Csaba Janáky, Dorottya Hursán, Balázs Endrődi, Wilaiwan Chanmanee, Daipayan Roy, Dong Liu, NR De Tacconi, Brian H Dennis, Krishnan Rajeshwar: Electro-and photoreduction of carbon dioxide: The twain shall meet at copper oxide/copper interfaces. In: ACS Energy Letters, 1, 2016, 332-338
2016Dorottya Hursán, Attila Kormányos, Krishnan Rajeshwar, Csaba Janáky: Polyaniline films photoelectrochemically reduce CO 2 to alcohols. In: Chemical Communications, 52, 2016, 8858-8861
2016Dorottya Hursán, Gábor London, Balázs Olasz, Csaba Janáky: Synthesis, characterization, and electrocatalytic properties of a custom-designed conjugated polymer with pyridine side chain. In: Electrochimica Acta, 217, 2016, 92-99
2014Balázs Endrődi, Dorottya Hursán, Liliána Petrilla, Gábor Bencsik, Csaba Visy: Incorporation of cobalt-ferrite nanoparticles into a conducting polymer in aqueous micellar medium: strategy to get photocatalytic composites. In: Acta Chimica Slovenica, 61, 2014, 376-381