Vesztergom, Soma

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2024

Rieder, Alain; Lorenzetti, Julia; Zelocualtecatl Montiel, Iván; Dutta, Abhijit; Iarchuk, Anna; Mirolo, Marta; Drnec, Jakub; Lorenzutti, Francesca; Haussener, Sophia; Kovács, Noémi; Vesztergom, Soma; Broekmann, Peter (2024). ICP-MS Assisted EDX Tomography: A Robust Method for Studying Electrolyte Penetration Phenomena in Gas Diffusion Electrodes Applied to CO2 Electrolysis. (In Press). Small methods, e2400200. Wiley 10.1002/smtd.202400200

2023

Wang, Yuzhen; Dutta, Abhijit; Iarchuk, Anna; Sun, Changzhe; Vesztergom, Soma; Broekmann, Peter (2023). Boosting Nitrate to Ammonia Electroconversion through Hydrogen Gas Evolution over Cu-foam@mesh Catalysts. ACS Catalysis, 13(12), pp. 8169-8182. American Chemical Society 10.1021/acscatal.3c00716

Vesztergom, Soma; Senocrate, Alessandro; Kong, Ying; Kolivoška, Viliam; Bernasconi, Francesco; Zboray, Robert; Battaglia, Corsin; Broekmann, Peter (2023). Eliminating Flooding-related Issues in Electrochemical CO₂-to-CO Converters: Two Lines of Defense. CHIMIA, 77(3), pp. 104-109. Schweizerische Chemische Gesellschaft 10.2533/chimia.2023.104

Hu, Huifang; Kong, Ying; Liu, Menglong; Kolivoška, Viliam; Rudnev, Alexander V; Hou, Yuhui; Erni, Rolf; Vesztergom, Soma; Broekmann, Peter (2023). Effective perspiration is essential to uphold the stability of zero-gap MEA-based cathodes used in CO2 electrolysers. Journal of materials chemistry. A, 11(10), pp. 5083-5094. Royal Society of Chemistry 10.1039/d2ta06965b

2022

Kong, Ying; Liu, Menglong; Hu, Huifang; Hou, Yuhui; Vesztergom, Soma; Galvez-Vazquez, María de Jesus; Zelocualtecatl Montiel, Iván; Kolivoška, Viliam; Broekmann, Peter (2022). Cracks as Efficient Tools to Mitigate Flooding in Gas Diffusion Electrodes Used for the Electrochemical Reduction of Carbon Dioxide. Small methods, 6(9), e2200369. Wiley 10.1002/smtd.202200369

2021

Liu, Menglong; Kong, Ying; Hu, Huifang; Kovács, Noémi; Sun, Changzhe; Zelocualtecatl Montiel, Iván; Gálvez Vázquez, María de Jesús; Hou, Yuhui; Mirolo, Marta; Martens, Isaac; Drnec, Jakub; Vesztergom, Soma; Broekmann, Peter (2021). The capping agent is the key: Structural alterations of Ag NPs during CO2 electrolysis probed in a zero-gap gas-flow configuration. Journal of catalysis, 404, pp. 371-382. Elsevier 10.1016/j.jcat.2021.10.016

Vesztergom, Soma; Dutta, Abhijit; Rahaman, Motiar; Kiran, Kiran; Zelocualtecatl Montiel, Iván; Broekmann, Peter (2021). Hydrogen Bubble Templated Metal Foams as Efficient Catalysts of CO 2 Electroreduction. ChemCatChem, 13(4), pp. 1039-1058. WILEY-VCH 10.1002/cctc.202001145

Hou, Yuhui; Kovács, Noémi; Xu, Heng; Sun, Changzhe; Erni, Rolf; Gálvez Vázquez, María de Jesús; Rieder, Alain; Hu, Huifang; Kong, Ying; Liu, Menglong; Wiley, Benjamin J.; Vesztergom, Soma; Broekmann, Peter (2021). Limitations of identical location SEM as a method of degradation studies on surfactant capped nanoparticle electrocatalysts. Journal of catalysis, 394, pp. 58-66. Elsevier 10.1016/j.jcat.2020.12.006

Dutta, Abhijit; Kiran, Kiran; Ramahan, Motiar; Zelocualtecatl Montiel, Ivan; Moreno-García, Pavel; Vesztergom, Soma; Drnec, Jakub; Oezaslan, Mehtap; Broekmann, Peter (2021). Insights from Operando and Identical Location (IL) Techniques on the Activation of Electrocatalysts for the Conversion of CO2: A Mini-Review. CHIMIA, 75(9), p. 733. Schweizerische Chemische Gesellschaft 10.2533/chimia.2021.733

2019

Bodappa, Nataraju; Fu, Yong-Chun; Broekmann, Peter; Furrer, Julien; Zick, Klaus; Vesztergom, Soma; Tahara, Hironobu; Sagara, Takamasa (2019). Electron transfer controlled by solvent and counter-anion dynamics in electrochemistry of viologen-type ionic liquid. Electrochimica acta, 320, p. 134559. Elsevier Science 10.1016/j.electacta.2019.134559

2018

Balmer, Thomas Wyss; Vesztergom, Soma; Broekmann, Peter; Stahel, Andreas; Büchler, Philippe (2018). Characterization of the electrical conductivity of bone and its correlation to osseous structure. Scientific Reports, 8(1), p. 8601. Nature Publishing Group 10.1038/s41598-018-26836-0

2016

Rudnev, Alexander V.; Zhumaev, Ulmas E.; Kuzume, Akiyoshi; Vesztergom, Soma; Furrer, Julien; Broekmann, Peter; Wandlowski, Thomas (2016). The promoting effect of water on the electroreduction of CO2 in acetonitrile. Electrochimica acta, 189, pp. 38-44. Elsevier Science 10.1016/j.electacta.2015.12.088

Vesztergom, Soma; Barankai, N.; Kovács, N.; Ujvári, M.; Broekmann, Peter; Siegenthaler, Hans; Láng, G.G. (2016). Electrical cross-talk in rotating ring–disk experiments. Electrochemistry communications, 68, pp. 54-58. Elsevier 10.1016/j.elecom.2016.04.012

Vesztergom, Soma; Barankai, Norbert; Kovács, Noémi; Ujvári, Mária; Siegenthaler, Hans; Broekmann, Peter; Láng, Győző G. (2016). Electrical cross-talk in four-electrode experiments. Journal of solid state electrochemistry, 20(11), pp. 3165-3177. Springer 10.1007/s10008-016-3294-4

2015

Dutta, Abhijit; Kuzume, Akiyoshi; Rahaman, Motiar; Vesztergom, Soma; Broekmann, Peter (2015). Monitoring the Chemical State of Catalysts for CO 2 Electroreduction: An In Operando Study. ACS Catalysis, 5(12), pp. 7498-7502. American Chemical Society 10.1021/acscatal.5b02322

Kovács, Noémi; Ujvári, Mária; Láng, Győző G.; Broekmann, Peter; Vesztergom, Soma (2015). Characterization of the Capacitance of a Rotating Ring–Disk Electrode. Instrumentation Science and Technology, 43(6), pp. 633-648. Taylor & Francis 10.1080/10739149.2015.1038561

Bodappa, Nataraju; Broekmann, Peter; Fu, Yongchun; Furrer, Julien; Furue, Yutaro; Sagara, Takamasa; Siegenthaler, Hans; Tahara, Hironobu; Vesztergom, Soma; Zick, Klaus; Wandlowski, Thomas (2015). Temperature-Dependent Transport Properties of a Redox-Active Ionic Liquid with a Viologen Group. Journal of physical chemistry. C, 119(2), pp. 1067-1077. American Chemical Society 10.1021/jp509931p

2014

Baghernejad, Masoud; Zhao, Xiaotao; Baruël Ørnsø, Kristian; Füeg, Michael; Rudnev, Alexander; Moreno-García, Pavel; Kaliginedi, Veerabhadrarao; Vesztergom, Soma; Huang, Cancan; Hong, Wenjing; Broekmann, Peter; Wandlowski, Thomas; Thygesen, Kristian S.; Bryce, Martin R. (2014). Electrochemical Control of Single-Molecule Conductance by Fermi-Level Tuning and Conjugation Switching. Journal of the American Chemical Society, 136(52), pp. 17922-17925. American Chemical Society 10.1021/ja510335z

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