VinaR - Repository of the Vinča Nuclear Institute
    • English
    • Српски
    • Српски (Serbia)
  • English 
    • English
    • Serbian (Cyrillic)
    • Serbian (Latin)
  • Login
View Item 
  •   Vinar
  • Vinča
  • Radovi istraživača
  • View Item
  •   Vinar
  • Vinča
  • Radovi istraživača
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Structure Prediction and Mechanical Properties of Silicon Hexaboride on Ab Initio Level

Thumbnail
2021
Main article [PDF] (3.139Mb)
Authors
Škundrić, Tamara
Matović, Branko
Zarubica, Aleksandra R.
Zagorac, Jelena B.
Tatarko, Peter
Zagorac, Dejan
Article (Published version)
Metadata
Show full item record
Abstract
Silicon borides represent very appealing industrial materials for research owing to their remarkable features, and, together with other boride and carbide-based materials, have very wide applications. Various Si–B phases have been investigated in the past, however a limited number of studies have been done on the pristine SiB6 compound. Structure prediction using a data mining ab initio approach has been performed in pure silicon hexaboride. Several novel structures, for which there are no previous experimental or theoretical data, have been discovered. Each of the structure candidates were locally optimized on the DFT level, employing the LDA-PZ and the GGA-PBE functional. Mechanical and elastic properties for each of the predicted and experimentally observed modifications have been investigated in great detail. In particular, the ductility/brittleness relationship, the character of the bonding, Young’s modulus E, bulk modulus B, and shear modulus K, including anisotropy, ...have been calculated and analyzed.

Keywords:
data mining / DFT / elastic properties / SiB6 / silicon hexaboride
Source:
Materials, 2021, 14, 24, 7887-
Funding / projects:
  • Ministry of Education, Science and Technological Development of Serbia [1702001]
  • Slovak Research and Development Agency [APVV-SK-SRB-0022 and APVV-17-0328]
  • Marie Sklodowska-Curie [No. 798651]

DOI: 10.3390/ma14247887

ISSN: 1996-1944

PubMed: 34947479

WoS: 000738759000001

Scopus: 2-s2.0-85121488941
[ Google Scholar ]
URI
https://vinar.vin.bg.ac.rs/handle/123456789/10101
Collections
  • Radovi istraživača
Institution/Community
Vinča
TY  - JOUR
AU  - Škundrić, Tamara
AU  - Matović, Branko
AU  - Zarubica, Aleksandra R.
AU  - Zagorac, Jelena B.
AU  - Tatarko, Peter
AU  - Zagorac, Dejan
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10101
AB  - Silicon borides represent very appealing industrial materials for research owing to their remarkable features, and, together with other boride and carbide-based materials, have very wide applications. Various Si–B phases have been investigated in the past, however a limited number of studies have been done on the pristine SiB6 compound. Structure prediction using a data mining ab initio approach has been performed in pure silicon hexaboride. Several novel structures, for which there are no previous experimental or theoretical data, have been discovered. Each of the structure candidates were locally optimized on the DFT level, employing the LDA-PZ and the GGA-PBE functional. Mechanical and elastic properties for each of the predicted and experimentally observed modifications have been investigated in great detail. In particular, the ductility/brittleness relationship, the character of the bonding, Young’s modulus E, bulk modulus B, and shear modulus K, including anisotropy, have been calculated and analyzed.
T2  - Materials
T1  - Structure Prediction and Mechanical Properties of Silicon Hexaboride on Ab Initio Level
VL  - 14
IS  - 24
SP  - 7887
DO  - 10.3390/ma14247887
ER  - 
@article{
author = "Škundrić, Tamara and Matović, Branko and Zarubica, Aleksandra R. and Zagorac, Jelena B. and Tatarko, Peter and Zagorac, Dejan",
year = "2021",
abstract = "Silicon borides represent very appealing industrial materials for research owing to their remarkable features, and, together with other boride and carbide-based materials, have very wide applications. Various Si–B phases have been investigated in the past, however a limited number of studies have been done on the pristine SiB6 compound. Structure prediction using a data mining ab initio approach has been performed in pure silicon hexaboride. Several novel structures, for which there are no previous experimental or theoretical data, have been discovered. Each of the structure candidates were locally optimized on the DFT level, employing the LDA-PZ and the GGA-PBE functional. Mechanical and elastic properties for each of the predicted and experimentally observed modifications have been investigated in great detail. In particular, the ductility/brittleness relationship, the character of the bonding, Young’s modulus E, bulk modulus B, and shear modulus K, including anisotropy, have been calculated and analyzed.",
journal = "Materials",
title = "Structure Prediction and Mechanical Properties of Silicon Hexaboride on Ab Initio Level",
volume = "14",
number = "24",
pages = "7887",
doi = "10.3390/ma14247887"
}
Škundrić, T., Matović, B., Zarubica, A. R., Zagorac, J. B., Tatarko, P.,& Zagorac, D.. (2021). Structure Prediction and Mechanical Properties of Silicon Hexaboride on Ab Initio Level. in Materials, 14(24), 7887.
https://doi.org/10.3390/ma14247887
Škundrić T, Matović B, Zarubica AR, Zagorac JB, Tatarko P, Zagorac D. Structure Prediction and Mechanical Properties of Silicon Hexaboride on Ab Initio Level. in Materials. 2021;14(24):7887.
doi:10.3390/ma14247887 .
Škundrić, Tamara, Matović, Branko, Zarubica, Aleksandra R., Zagorac, Jelena B., Tatarko, Peter, Zagorac, Dejan, "Structure Prediction and Mechanical Properties of Silicon Hexaboride on Ab Initio Level" in Materials, 14, no. 24 (2021):7887,
https://doi.org/10.3390/ma14247887 . .

DSpace software copyright © 2002-2015  DuraSpace
About the VinaR Repository | Send Feedback

OpenAIRERCUB
 

 

All of DSpaceInstitutions/communitiesAuthorsTitlesSubjectsThis institutionAuthorsTitlesSubjects

Statistics

View Usage Statistics

DSpace software copyright © 2002-2015  DuraSpace
About the VinaR Repository | Send Feedback

OpenAIRERCUB