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Autor:
Kalyk, Fariza, Stankevičiūtė, Algita, Budrytė, Gintarė, Gaidamavičienė, Giedrė, Žalga, Artūras, Kriūkienė, Rita, Kavaliauskas, Žydrūnas, Leszczyńska, Marzena, Abakevičienė, Brigita
Publikováno v:
In Ceramics International 15 October 2020 46(15):24385-24394
Nanostructured gadolinia doped ceria ceramics for low-temperature solid oxide fuel cells application
One of the most frequently studied and used electrochemical energy conversion devices are solid oxide fuel cells (SOFCs). Low-temperature SOFCs (LT-SOFCs), operating at 400-650 °C, are denoted by a shorter start-up time, do not require expensive mat
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______3368::84627ab0148a947a3eba3090bce1b5eb
https://vb.ktu.edu/KTU:ELABAPDB142203288&prefLang=en_US
https://vb.ktu.edu/KTU:ELABAPDB142203288&prefLang=en_US
Autor:
Kalyk, Fariza, Žalga, Artūras, Vasiliauskas, Andrius, Tamulevičius, Tomas, Tamulevičius, Sigitas, Abakevičienė, Brigita, MDPI AG (Basel, Switzerland)
Publikováno v:
Coatings; Volume 12; Issue 6; Pages: 747
Coatings, Basel : MDPI, 2022, vol. 12, iss. 6, art. no. 747, p. 1-16
Coatings, Basel : MDPI, 2022, vol. 12, iss. 6, art. no. 747, p. 1-16
Gadolinium-doped ceria (GDC) nanopowders, prepared using the co-precipitation synthesis method, were applied as a starting material to form ceria-based thin films using the electron-beam technique. The scanning electron microscopy (SEM )analysis of t
Autor:
Bastakys, Lukas, Kalyk, Fariza, Marcinauskas, Liutauras, Čyvienė, Jurgita, Abakevičienė, Brigita
Publikováno v:
In Materials Letters 15 July 2020 271
Solid oxide fuel cells (SOFCs) have become one of the most used and researched types of fuel cells as they can operate over a wide temperature range from 400 °C to 1000 °C. The electrolyte of SOFC as initial material has important requirements such
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______3368::063a6f8d50a5a6261a4d7807cad520a8
https://vb.ktu.edu/KTU:ELABAPDB76625226&prefLang=en_US
https://vb.ktu.edu/KTU:ELABAPDB76625226&prefLang=en_US