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Crystal Structure and Properties of Theoretically Predicted AlB12

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2020
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Autori
Zagorac, Jelena B.
Matović, Branko
Pejić, Milan
Milutinović, Katarina
Zagorac, Dejan
Članak u časopisu (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentu
Apstrakt
Aluminum borides have various industrial applications, used in fuels, explosives, abrasives, and as additives to consolidated materials based on boron carbide. The structure of AlB12 is similar to that of boron carbide, including almost regular icosahedrons of boron atoms. The absence of the structure data of some higher aluminum borides and the presence of a large number of reflexes in their diffraction patterns makes the identification of phase compositions very difficult and limits the possibilities of the computer modeling of the AlB12. The crystal structure of AlB12 is usually considered as tetragonal α-AlB12 (space group P43212) and orthorhombic γ-AlB12 (space group P212121) which can be synthesized from high-temperature Al-B melts. In our work, we have performed ab initio optimization of the experimentally observed Yannoni’s AlB12 using GGA-PBE functional and obtained relaxed unit cell parameters and atomic positions. Furthermore, we have predicted three different AlB12 structur...e candidates obtained as a result of the ICSD data mining. The most favorable structure according to total energy ranking was found in the UB12 structure type, which crystallizes in the cubic space group Fm-3m. Therefore, for the new cubic AlB12, we have calculated mechanical properties on different pressures and made the comparison with available experimental data in the AlB12 system.

Ključne reči:
Aluminium borides / crystal structure / ab initio optimization / AlB12
Izvor:
Journal of Innovative Materials in Extreme Conditions, 2020, 1, 1, 28-36
Finansiranje / projekti:
  • Ministry of Education, Science and Technological Development of the Republic of Serbia

ISSN: 2738-0882

[ Google Scholar ]
URI
https://vinar.vin.bg.ac.rs/handle/123456789/9940
Kolekcije
  • Journal of Innovative Materials in Extreme Conditions
Institucija/grupa
Vinča
TY  - JOUR
AU  - Zagorac, Jelena B.
AU  - Matović, Branko
AU  - Pejić, Milan
AU  - Milutinović, Katarina
AU  - Zagorac, Dejan
PY  - 2020
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9940
AB  - Aluminum borides have various industrial applications, used in fuels, explosives, abrasives, and as additives to consolidated materials based on boron carbide. The structure of AlB12 is similar to that of boron carbide, including almost regular icosahedrons of boron atoms. The absence of the structure data of some higher aluminum borides and the presence of a large number of reflexes in their diffraction patterns makes the identification of phase compositions very difficult and limits the possibilities of the computer modeling of the AlB12. The crystal structure of AlB12 is usually considered as tetragonal α-AlB12 (space group P43212) and orthorhombic γ-AlB12 (space group P212121) which can be synthesized from high-temperature Al-B melts. In our work, we have performed ab initio optimization of the experimentally observed Yannoni’s AlB12 using GGA-PBE functional and obtained relaxed unit cell parameters and atomic positions. Furthermore, we have predicted three different AlB12 structure candidates obtained as a result of the ICSD data mining. The most favorable structure according to total energy ranking was found in the UB12 structure type, which crystallizes in the cubic space group Fm-3m. Therefore, for the new cubic AlB12, we have calculated mechanical properties on different pressures and made the comparison with available experimental data in the AlB12 system.
T2  - Journal of Innovative Materials in Extreme Conditions
T1  - Crystal Structure and Properties of Theoretically Predicted AlB12
VL  - 1
IS  - 1
SP  - 28
EP  - 36
ER  - 
@article{
author = "Zagorac, Jelena B. and Matović, Branko and Pejić, Milan and Milutinović, Katarina and Zagorac, Dejan",
year = "2020",
abstract = "Aluminum borides have various industrial applications, used in fuels, explosives, abrasives, and as additives to consolidated materials based on boron carbide. The structure of AlB12 is similar to that of boron carbide, including almost regular icosahedrons of boron atoms. The absence of the structure data of some higher aluminum borides and the presence of a large number of reflexes in their diffraction patterns makes the identification of phase compositions very difficult and limits the possibilities of the computer modeling of the AlB12. The crystal structure of AlB12 is usually considered as tetragonal α-AlB12 (space group P43212) and orthorhombic γ-AlB12 (space group P212121) which can be synthesized from high-temperature Al-B melts. In our work, we have performed ab initio optimization of the experimentally observed Yannoni’s AlB12 using GGA-PBE functional and obtained relaxed unit cell parameters and atomic positions. Furthermore, we have predicted three different AlB12 structure candidates obtained as a result of the ICSD data mining. The most favorable structure according to total energy ranking was found in the UB12 structure type, which crystallizes in the cubic space group Fm-3m. Therefore, for the new cubic AlB12, we have calculated mechanical properties on different pressures and made the comparison with available experimental data in the AlB12 system.",
journal = "Journal of Innovative Materials in Extreme Conditions",
title = "Crystal Structure and Properties of Theoretically Predicted AlB12",
volume = "1",
number = "1",
pages = "28-36"
}
Zagorac, J. B., Matović, B., Pejić, M., Milutinović, K.,& Zagorac, D.. (2020). Crystal Structure and Properties of Theoretically Predicted AlB12. in Journal of Innovative Materials in Extreme Conditions, 1(1), 28-36.
Zagorac JB, Matović B, Pejić M, Milutinović K, Zagorac D. Crystal Structure and Properties of Theoretically Predicted AlB12. in Journal of Innovative Materials in Extreme Conditions. 2020;1(1):28-36..
Zagorac, Jelena B., Matović, Branko, Pejić, Milan, Milutinović, Katarina, Zagorac, Dejan, "Crystal Structure and Properties of Theoretically Predicted AlB12" in Journal of Innovative Materials in Extreme Conditions, 1, no. 1 (2020):28-36.

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