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UT=001181765800001 OR UT=001092254800001 OR UT=001143411300001 OR UT=000892295100003


BibTeX entries:
@ARTICLE{Bogar:24:A,
	 author = {Bogar, M. AND Yakovlev, Y. AND Nováková, J. AND Darabut, A.M. AND Kriechbaum, M. AND Amenitsch, H. AND Taccani, R. AND Matolínová, I.},
	 title = {A small angle X-ray scattering approach for investigating fuel cell catalyst degradation for both ex situ and in operando analyses},
	 journal = {Int. J. Hydrog. Energy},
	 fulljournal = {International Journal of Hydrogen Energy},
	 volume = {58},
	 number = {},
	 pages = {1673--1681},
	 year = {2024},
	 issn = {0360-3199},
	 doi = {10.1016/j.ijhydene.2024.01.261},
	 KFPPid = {2517},
}

@ARTICLE{Blanc:24:Bifunctional,
	 author = {Blanco Redondo, L. AND Lobko, Y. AND Veltruská, K. AND Nováková, J. AND Mazur, M. AND Darabut, A.M. AND Hrbek, T. AND Dopita, M. AND Hraníček, J. AND Yakovlev, Y. AND Matolínová, I. AND Matolín, V.},
	 title = {Bifunctional Pt–Ir nanoparticle catalysts for oxygen reduction and evolution reactions: investigating the influence of surface composition on the catalytic properties},
	 journal = {Sustainable Energy Fuels},
	 fulljournal = {Sustainable Energy & Fuels},
	 volume = {8},
	 number = {4},
	 pages = {797--810},
	 year = {2024},
	 issn = {2398-4902},
	 doi = {10.1039/d3se01238g},
	 KFPPid = {2500},
}

@ARTICLE{Fedorchuk:24:Synthesis,
	 author = {Fedorchuk, O.P. AND Plutenko, T.O. AND Plutenko, M.O. AND V’yunov, O.I. AND Torchyniuk, P.V. AND Khomenko, O.V. AND Lobko, Y.V. AND Darabut, A.M. AND Gamón Rodríguez, M. AND Nováková, J. AND Matolínová, I.},
	 title = {Synthesis and investigation of mixed Zn–Ni spinel nanoparticles for microwave applications},
	 journal = {Mol. Cryst. Liq. Cryst.},
	 fulljournal = {Molecular Crystals and Liquid Crystals},
	 volume = {768},
	 number = {4},
	 pages = {13--26},
	 year = {2024},
	 issn = {1542-1406},
	 doi = {10.1080/15421406.2023.2272391},
	 KFPPid = {2511},
}

@ARTICLE{Darabut:22:Influence,
	 author = {Darabut, A.M. AND Lobko, Y. AND Yakovlev, Y. AND Gamón Rodríguez, M. AND Veltruská, K. AND Šmíd, B. AND Kúš, P. AND Nováková, J. AND Dopita, M. AND Vorokhta, M. AND Kopecký, V. AND Procházka, M. AND Matolínová, I. AND Matolín, V.},
	 title = {Influence of thermal treatment on the structure and electrical conductivity of thermally expanded graphite},
	 journal = {Advanced Powder Technology},
	 fulljournal = {Advanced Powder Technology},
	 volume = {33},
	 number = {12},
	 pages = {103884},
	 eid = {103884},
	 year = {2022},
	 issn = {0921-8831},
	 doi = {10.1016/j.apt.2022.103884},
	 KFPPid = {2360},
}


Bibitems:

\bibitem[{Bogar et~al.(2024)}]{Bogar:24:A}
Bogar, M., Yakovlev, Y., Nováková, J., Darabut, A.M., Kriechbaum, M., Amenitsch, H., Taccani, R., Matolínová, I., A small angle X-ray scattering approach for investigating fuel cell catalyst degradation for both ex situ and in operando analyses. {\it Int. J. Hydrog. Energy.} {\bf 58}: 1673--1681, 2024.

\bibitem[{Blanc et~al.(2024)}]{Blanc:24:Bifunctional}
Blanco Redondo, L., Lobko, Y., Veltruská, K., Nováková, J., Mazur, M., Darabut, A.M., Hrbek, T., Dopita, M., Hraníček, J., Yakovlev, Y., Matolínová, I., Matolín, V., Bifunctional Pt–Ir nanoparticle catalysts for oxygen reduction and evolution reactions: investigating the influence of surface composition on the catalytic properties. {\it Sustainable Energy Fuels.} {\bf 8}(4): 797--810, 2024.

\bibitem[{Fedorchuk et~al.(2024)}]{Fedorchuk:24:Synthesis}
Fedorchuk, O.P., Plutenko, T.O., Plutenko, M.O., V’yunov, O.I., Torchyniuk, P.V., Khomenko, O.V., Lobko, Y.V., Darabut, A.M., Gamón Rodríguez, M., Nováková, J., Matolínová, I., Synthesis and investigation of mixed Zn–Ni spinel nanoparticles for microwave applications. {\it Mol. Cryst. Liq. Cryst.} {\bf 768}(4): 13--26, 2024.

\bibitem[{Darabut et~al.(2022)}]{Darabut:22:Influence}
Darabut, A.M., Lobko, Y., Yakovlev, Y., Gamón Rodríguez, M., Veltruská, K., Šmíd, B., Kúš, P., Nováková, J., Dopita, M., Vorokhta, M., Kopecký, V., Procházka, M., Matolínová, I., Matolín, V., Influence of thermal treatment on the structure and electrical conductivity of thermally expanded graphite. {\it Advanced Powder Technology.} {\bf 33}(12): 103884, 2022.