Cargando…

Electronic, magnetic, optical and thermoelectric properties of Ca(2)Cr(1−x)Ni(x)OsO(6) double perovskites

With the help of density functional theory calculations, we explored the recently synthesized double perovskite material Ca(2)CrOsO(6) and found it to be a ferrimagnetic insulator with a band gap of ∼0.6 eV. Its effective magnetic moment is found to be ∼0.23 μ(B) per unit cell. The proposed behavior...

Descripción completa

Detalles Bibliográficos
Autores principales: Bhandari, Shalika R., Yadav, D. K., Belbase, B. P., Zeeshan, M., Sadhukhan, B., Rai, D. P., Thapa, R. K., Kaphle, G. C., Ghimire, Madhav Prasad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059137/
https://www.ncbi.nlm.nih.gov/pubmed/35516814
http://dx.doi.org/10.1039/c9ra10775d
_version_ 1784698249409462272
author Bhandari, Shalika R.
Yadav, D. K.
Belbase, B. P.
Zeeshan, M.
Sadhukhan, B.
Rai, D. P.
Thapa, R. K.
Kaphle, G. C.
Ghimire, Madhav Prasad
author_facet Bhandari, Shalika R.
Yadav, D. K.
Belbase, B. P.
Zeeshan, M.
Sadhukhan, B.
Rai, D. P.
Thapa, R. K.
Kaphle, G. C.
Ghimire, Madhav Prasad
author_sort Bhandari, Shalika R.
collection PubMed
description With the help of density functional theory calculations, we explored the recently synthesized double perovskite material Ca(2)CrOsO(6) and found it to be a ferrimagnetic insulator with a band gap of ∼0.6 eV. Its effective magnetic moment is found to be ∼0.23 μ(B) per unit cell. The proposed behavior arises from the cooperative effect of spin–orbit coupling and Coulomb correlation of Cr-3d and Os-5d electrons along with the crystal field. Within the ferrimagnetic configuration, doping with 50% Ni in the Cr-sites resulted in a half-metallic state with a total moment of nearly zero, a characteristic of spintronic materials. Meanwhile, the optical study reveals that both ε(1)(xx) and ε(1)(zz) decrease first and then increase rapidly with increasing photon energy up to 1.055 eV. We also found optical anisotropy up to ∼14 eV, where the material becomes almost optically isotropic. This material has a plateau like region in the σ(xx) and σ(zz) parts of the optical conductivity due to a strong 3d–5d interband transition between Cr and Os. In addition, we performed thermoelectric calculations whose results predict that the material might not be good as a thermoelectric device due to its small power factor.
format Online
Article
Text
id pubmed-9059137
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90591372022-05-04 Electronic, magnetic, optical and thermoelectric properties of Ca(2)Cr(1−x)Ni(x)OsO(6) double perovskites Bhandari, Shalika R. Yadav, D. K. Belbase, B. P. Zeeshan, M. Sadhukhan, B. Rai, D. P. Thapa, R. K. Kaphle, G. C. Ghimire, Madhav Prasad RSC Adv Chemistry With the help of density functional theory calculations, we explored the recently synthesized double perovskite material Ca(2)CrOsO(6) and found it to be a ferrimagnetic insulator with a band gap of ∼0.6 eV. Its effective magnetic moment is found to be ∼0.23 μ(B) per unit cell. The proposed behavior arises from the cooperative effect of spin–orbit coupling and Coulomb correlation of Cr-3d and Os-5d electrons along with the crystal field. Within the ferrimagnetic configuration, doping with 50% Ni in the Cr-sites resulted in a half-metallic state with a total moment of nearly zero, a characteristic of spintronic materials. Meanwhile, the optical study reveals that both ε(1)(xx) and ε(1)(zz) decrease first and then increase rapidly with increasing photon energy up to 1.055 eV. We also found optical anisotropy up to ∼14 eV, where the material becomes almost optically isotropic. This material has a plateau like region in the σ(xx) and σ(zz) parts of the optical conductivity due to a strong 3d–5d interband transition between Cr and Os. In addition, we performed thermoelectric calculations whose results predict that the material might not be good as a thermoelectric device due to its small power factor. The Royal Society of Chemistry 2020-04-23 /pmc/articles/PMC9059137/ /pubmed/35516814 http://dx.doi.org/10.1039/c9ra10775d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Bhandari, Shalika R.
Yadav, D. K.
Belbase, B. P.
Zeeshan, M.
Sadhukhan, B.
Rai, D. P.
Thapa, R. K.
Kaphle, G. C.
Ghimire, Madhav Prasad
Electronic, magnetic, optical and thermoelectric properties of Ca(2)Cr(1−x)Ni(x)OsO(6) double perovskites
title Electronic, magnetic, optical and thermoelectric properties of Ca(2)Cr(1−x)Ni(x)OsO(6) double perovskites
title_full Electronic, magnetic, optical and thermoelectric properties of Ca(2)Cr(1−x)Ni(x)OsO(6) double perovskites
title_fullStr Electronic, magnetic, optical and thermoelectric properties of Ca(2)Cr(1−x)Ni(x)OsO(6) double perovskites
title_full_unstemmed Electronic, magnetic, optical and thermoelectric properties of Ca(2)Cr(1−x)Ni(x)OsO(6) double perovskites
title_short Electronic, magnetic, optical and thermoelectric properties of Ca(2)Cr(1−x)Ni(x)OsO(6) double perovskites
title_sort electronic, magnetic, optical and thermoelectric properties of ca(2)cr(1−x)ni(x)oso(6) double perovskites
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059137/
https://www.ncbi.nlm.nih.gov/pubmed/35516814
http://dx.doi.org/10.1039/c9ra10775d
work_keys_str_mv AT bhandarishalikar electronicmagneticopticalandthermoelectricpropertiesofca2cr1xnixoso6doubleperovskites
AT yadavdk electronicmagneticopticalandthermoelectricpropertiesofca2cr1xnixoso6doubleperovskites
AT belbasebp electronicmagneticopticalandthermoelectricpropertiesofca2cr1xnixoso6doubleperovskites
AT zeeshanm electronicmagneticopticalandthermoelectricpropertiesofca2cr1xnixoso6doubleperovskites
AT sadhukhanb electronicmagneticopticalandthermoelectricpropertiesofca2cr1xnixoso6doubleperovskites
AT raidp electronicmagneticopticalandthermoelectricpropertiesofca2cr1xnixoso6doubleperovskites
AT thapark electronicmagneticopticalandthermoelectricpropertiesofca2cr1xnixoso6doubleperovskites
AT kaphlegc electronicmagneticopticalandthermoelectricpropertiesofca2cr1xnixoso6doubleperovskites
AT ghimiremadhavprasad electronicmagneticopticalandthermoelectricpropertiesofca2cr1xnixoso6doubleperovskites