Cargando…

Exploration of the structural, vibrational, electronic, mechanical and thermal properties of Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8): a DFT study

The structural, dynamical, electro-optical, mechanical, and thermal characteristics of the newly synthesized intermetallic compounds Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8) have been studied under ambient and elevated pressure through density functional theory (DFT). The obtained lattice parameters of the...

Descripción completa

Detalles Bibliográficos
Autores principales: Chakraborty, Arpon, Liton, M. N. H., Sarker, M. S. I., Rahman, M. M., Khan, M. K. R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10544048/
https://www.ncbi.nlm.nih.gov/pubmed/37790092
http://dx.doi.org/10.1039/d3ra05334b
_version_ 1785114418345934848
author Chakraborty, Arpon
Liton, M. N. H.
Sarker, M. S. I.
Rahman, M. M.
Khan, M. K. R.
author_facet Chakraborty, Arpon
Liton, M. N. H.
Sarker, M. S. I.
Rahman, M. M.
Khan, M. K. R.
author_sort Chakraborty, Arpon
collection PubMed
description The structural, dynamical, electro-optical, mechanical, and thermal characteristics of the newly synthesized intermetallic compounds Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8) have been studied under ambient and elevated pressure through density functional theory (DFT). The obtained lattice parameters of the compounds are consistent with the experimental values. The metallic character of these compounds is established by the band structure and density of states (DOS). The electronic charge density distribution and bond analysis imply that Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8) have mainly both ionic and covalent bonding. The non-negative phonon dispersion frequency of the compounds reaffirms their dynamical stability. Both compounds are tough as well as have high melting points, and hence, can be applied in harsh conditions. Mechanical properties are significantly improved under pressure. Thermal barrier coating (TBC) is a possible field of application for both compounds. The different thermal properties such as the Debye temperature (Θ(D)), Grüneisen parameter (γ), melting temperature (T(m)), minimum thermal conductivity (K(min)) and lattice thermal conductivity (κ(ph)) of these compounds have been studied to figure out the suitable application areas in thermally demanding situations. The pressure and temperature dependent bulk modulus (B) and other thermodynamic properties have also been analyzed, which suggested that the present compounds are strong candidates for device applications at high temperature and pressure. Owing to their high optical absorptivity and reflectivity in the UV region, they are also candidates for UV-based applications. Furthermore, they also have applicability in the fields of electronics, aviation, energy storage, and supercapacitor devices for their superior electronic, thermal and mechanical properties.
format Online
Article
Text
id pubmed-10544048
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-105440482023-10-03 Exploration of the structural, vibrational, electronic, mechanical and thermal properties of Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8): a DFT study Chakraborty, Arpon Liton, M. N. H. Sarker, M. S. I. Rahman, M. M. Khan, M. K. R. RSC Adv Chemistry The structural, dynamical, electro-optical, mechanical, and thermal characteristics of the newly synthesized intermetallic compounds Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8) have been studied under ambient and elevated pressure through density functional theory (DFT). The obtained lattice parameters of the compounds are consistent with the experimental values. The metallic character of these compounds is established by the band structure and density of states (DOS). The electronic charge density distribution and bond analysis imply that Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8) have mainly both ionic and covalent bonding. The non-negative phonon dispersion frequency of the compounds reaffirms their dynamical stability. Both compounds are tough as well as have high melting points, and hence, can be applied in harsh conditions. Mechanical properties are significantly improved under pressure. Thermal barrier coating (TBC) is a possible field of application for both compounds. The different thermal properties such as the Debye temperature (Θ(D)), Grüneisen parameter (γ), melting temperature (T(m)), minimum thermal conductivity (K(min)) and lattice thermal conductivity (κ(ph)) of these compounds have been studied to figure out the suitable application areas in thermally demanding situations. The pressure and temperature dependent bulk modulus (B) and other thermodynamic properties have also been analyzed, which suggested that the present compounds are strong candidates for device applications at high temperature and pressure. Owing to their high optical absorptivity and reflectivity in the UV region, they are also candidates for UV-based applications. Furthermore, they also have applicability in the fields of electronics, aviation, energy storage, and supercapacitor devices for their superior electronic, thermal and mechanical properties. The Royal Society of Chemistry 2023-10-02 /pmc/articles/PMC10544048/ /pubmed/37790092 http://dx.doi.org/10.1039/d3ra05334b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chakraborty, Arpon
Liton, M. N. H.
Sarker, M. S. I.
Rahman, M. M.
Khan, M. K. R.
Exploration of the structural, vibrational, electronic, mechanical and thermal properties of Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8): a DFT study
title Exploration of the structural, vibrational, electronic, mechanical and thermal properties of Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8): a DFT study
title_full Exploration of the structural, vibrational, electronic, mechanical and thermal properties of Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8): a DFT study
title_fullStr Exploration of the structural, vibrational, electronic, mechanical and thermal properties of Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8): a DFT study
title_full_unstemmed Exploration of the structural, vibrational, electronic, mechanical and thermal properties of Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8): a DFT study
title_short Exploration of the structural, vibrational, electronic, mechanical and thermal properties of Ru(4)Al(3)B(2) and Ru(9)Al(3)B(8): a DFT study
title_sort exploration of the structural, vibrational, electronic, mechanical and thermal properties of ru(4)al(3)b(2) and ru(9)al(3)b(8): a dft study
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10544048/
https://www.ncbi.nlm.nih.gov/pubmed/37790092
http://dx.doi.org/10.1039/d3ra05334b
work_keys_str_mv AT chakrabortyarpon explorationofthestructuralvibrationalelectronicmechanicalandthermalpropertiesofru4al3b2andru9al3b8adftstudy
AT litonmnh explorationofthestructuralvibrationalelectronicmechanicalandthermalpropertiesofru4al3b2andru9al3b8adftstudy
AT sarkermsi explorationofthestructuralvibrationalelectronicmechanicalandthermalpropertiesofru4al3b2andru9al3b8adftstudy
AT rahmanmm explorationofthestructuralvibrationalelectronicmechanicalandthermalpropertiesofru4al3b2andru9al3b8adftstudy
AT khanmkr explorationofthestructuralvibrationalelectronicmechanicalandthermalpropertiesofru4al3b2andru9al3b8adftstudy