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Interaction of oxide ceramics with metal hydrides

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2018
Preuzimanje 🢃
Conference article [PDF] (887.0Kb)
Autori
Novaković, Nikola
Milošević Govedarović, Sanja S.
Paskaš Mamula, Bojana
Kurko, Sandra
Pantić, Tijana
Medić-Ilić, Mirjana
Grbović-Novaković, Jasmina
Konferencijski prilog (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentu
Apstrakt
Magnesium hydride (MgH2 ) is one of the most favorable hydrogen storage materials because it is directly formed from the reaction of Mg metal with gaseous hydrogen while reaching a high mass capacity (7.6 wt %). However, the sorption reaction is too slow for practical use and needs higher temperature than 300 °C for hydrogen sorption reactions. The hydrogen storage properties can be tailored by addition of small amount of transition metal oxides (TiO2,VO2 ). In order to understand the processes that occurred during sorption reaction we have used both theoretical and experimental approach to study reaction mechanism in powder and thin films materials. Processes taking place during hydrogen desorption from Mg/MgH2 thin films upon modification either by TiO2 capped layer or by ion irradiation were also investigated. Irradiation was used to produce controlled point defects quantity with well-defined depth distribution. It was shown that the size, shape, and concentration of Mg nuclei forme...d during hydrogen desorption from MgH2 thin films depend on the characteristics and distribution of the induced defects. Addition of VO2 to powder milling bland dramatically improves the kinetics of sorption reaction, It is worth to notice that the full charge/discharge is achieved at relatively low temperatures.

Izvor:
Advanced Ceramics and Application : 7th Serbian Ceramic Society Conference : program and the book of abstracts; September 17-19, 2018; Belgrade, 2018, 60-61
Izdavač:
  • Belgrade : Serbian Ceramic Society
Napomena:
  • VII Serbian Ceramic Society Conference - Advanced Ceramics and Application : new frontiers in multifunctional material science and processing : program and the book of abstracts; September 17-19, 2018; Belgrade

ISBN: 978-86-915627-6-2

[ Google Scholar ]
Handle
https://hdl.handle.net/21.15107/rcub_vinar_10879
URI
https://vinar.vin.bg.ac.rs/handle/123456789/10879
Kolekcije
  • 010 - Laboratorija za fiziku
  • 011 - Laboratorija za nuklearnu i plazma fiziku
  • Radovi istraživača
Institucija/grupa
Vinča
TY  - CONF
AU  - Novaković, Nikola
AU  - Milošević Govedarović, Sanja S.
AU  - Paskaš Mamula, Bojana
AU  - Kurko, Sandra
AU  - Pantić, Tijana
AU  - Medić-Ilić, Mirjana
AU  - Grbović-Novaković, Jasmina
PY  - 2018
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10879
AB  - Magnesium hydride (MgH2 ) is one of the most favorable hydrogen storage materials because it is directly formed from the reaction of Mg metal with gaseous hydrogen while reaching a high mass capacity (7.6 wt %). However, the sorption reaction is too slow for practical use and needs higher temperature than 300 °C for hydrogen sorption reactions. The hydrogen storage properties can be tailored by addition of small amount of transition metal oxides (TiO2,VO2 ). In order to understand the processes that occurred during sorption reaction we have used both theoretical and experimental approach to study reaction mechanism in powder and thin films materials. Processes taking place during hydrogen desorption from Mg/MgH2 thin films upon modification either by TiO2 capped layer or by ion irradiation were also investigated. Irradiation was used to produce controlled point defects quantity with well-defined depth distribution. It was shown that the size, shape, and concentration of Mg nuclei formed during hydrogen desorption from MgH2 thin films depend on the characteristics and distribution of the induced defects. Addition of VO2 to powder milling bland dramatically improves the kinetics of sorption reaction, It is worth to notice that the full charge/discharge is achieved at relatively low temperatures.
PB  - Belgrade : Serbian Ceramic Society
C3  - Advanced Ceramics and Application : 7th Serbian Ceramic Society Conference : program and the book of abstracts; September 17-19, 2018; Belgrade
T1  - Interaction of oxide ceramics with metal hydrides
SP  - 60
EP  - 61
UR  - https://hdl.handle.net/21.15107/rcub_vinar_10879
ER  - 
@conference{
author = "Novaković, Nikola and Milošević Govedarović, Sanja S. and Paskaš Mamula, Bojana and Kurko, Sandra and Pantić, Tijana and Medić-Ilić, Mirjana and Grbović-Novaković, Jasmina",
year = "2018",
abstract = "Magnesium hydride (MgH2 ) is one of the most favorable hydrogen storage materials because it is directly formed from the reaction of Mg metal with gaseous hydrogen while reaching a high mass capacity (7.6 wt %). However, the sorption reaction is too slow for practical use and needs higher temperature than 300 °C for hydrogen sorption reactions. The hydrogen storage properties can be tailored by addition of small amount of transition metal oxides (TiO2,VO2 ). In order to understand the processes that occurred during sorption reaction we have used both theoretical and experimental approach to study reaction mechanism in powder and thin films materials. Processes taking place during hydrogen desorption from Mg/MgH2 thin films upon modification either by TiO2 capped layer or by ion irradiation were also investigated. Irradiation was used to produce controlled point defects quantity with well-defined depth distribution. It was shown that the size, shape, and concentration of Mg nuclei formed during hydrogen desorption from MgH2 thin films depend on the characteristics and distribution of the induced defects. Addition of VO2 to powder milling bland dramatically improves the kinetics of sorption reaction, It is worth to notice that the full charge/discharge is achieved at relatively low temperatures.",
publisher = "Belgrade : Serbian Ceramic Society",
journal = "Advanced Ceramics and Application : 7th Serbian Ceramic Society Conference : program and the book of abstracts; September 17-19, 2018; Belgrade",
title = "Interaction of oxide ceramics with metal hydrides",
pages = "60-61",
url = "https://hdl.handle.net/21.15107/rcub_vinar_10879"
}
Novaković, N., Milošević Govedarović, S. S., Paskaš Mamula, B., Kurko, S., Pantić, T., Medić-Ilić, M.,& Grbović-Novaković, J.. (2018). Interaction of oxide ceramics with metal hydrides. in Advanced Ceramics and Application : 7th Serbian Ceramic Society Conference : program and the book of abstracts; September 17-19, 2018; Belgrade
Belgrade : Serbian Ceramic Society., 60-61.
https://hdl.handle.net/21.15107/rcub_vinar_10879
Novaković N, Milošević Govedarović SS, Paskaš Mamula B, Kurko S, Pantić T, Medić-Ilić M, Grbović-Novaković J. Interaction of oxide ceramics with metal hydrides. in Advanced Ceramics and Application : 7th Serbian Ceramic Society Conference : program and the book of abstracts; September 17-19, 2018; Belgrade. 2018;:60-61.
https://hdl.handle.net/21.15107/rcub_vinar_10879 .
Novaković, Nikola, Milošević Govedarović, Sanja S., Paskaš Mamula, Bojana, Kurko, Sandra, Pantić, Tijana, Medić-Ilić, Mirjana, Grbović-Novaković, Jasmina, "Interaction of oxide ceramics with metal hydrides" in Advanced Ceramics and Application : 7th Serbian Ceramic Society Conference : program and the book of abstracts; September 17-19, 2018; Belgrade (2018):60-61,
https://hdl.handle.net/21.15107/rcub_vinar_10879 .

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