First principal calculations of electronic, optical and magnetic properties of cubic K1−xYxNbO3(Y = Fe, Ni). (19th October 2021)
- Record Type:
- Journal Article
- Title:
- First principal calculations of electronic, optical and magnetic properties of cubic K1−xYxNbO3(Y = Fe, Ni). (19th October 2021)
- Main Title:
- First principal calculations of electronic, optical and magnetic properties of cubic K1−xYxNbO3(Y = Fe, Ni)
- Authors:
- Jameel, Muhammad Hasnain
Xu, Tete
Jiang, Zhen-Yi
Bin Agam, Mohd Arif
Roslan, Muhammad Sufi
Farhina, Afroj
Hamzah, Maytham Qabel
Rafique, Faiza - Abstract:
- Abstract: The First principle study based on Density Function Theory (DFT) was accomplished to explore the electronic bandgap configurations of KNbO3 by transition metal doping such as Iron [Fe], and Nickel [Ni] using PBE-GGA (Perdew–Burke–Ernzerhof- Generalized Gradient Approximation) for the exchange-correlation potentials. In the current study K1−x Yx NbO3 doped with various percentages (12.5%, 25%, 50%, and 75%) of [Ni] and [Fe] metal ions. Different unique properties such as electronic, optical conductivity, and magnetic properties of cubic K1−x Yx NbO3 (Y = Fe, Ni) compounds have been calculated through the FP-LAW WEIN2k software within DFT. The bandgap of KNbO3 can be reduced by doping various metal ions such as [Ni] and [Fe]. The spin up band structures was observed semiconductor but spin down metallic behaviour. The bandgap structure of overall K1−x Yx NbO3 (Y = Fe, Ni) compound after doping [Fe] and [Ni] with various concentrations become half metallic compound. Under the DFT scheme, iron [Fe] and nickel [Ni] are reliable as dopants for reducing the bandgap of KNbO3 . After substituting various impurity concentration (12.5%, 25%, 50%, and 75%) of [Fe] and [Ni] the energy absorption peaks are 8.2 to 8.43eV for K1−x Yx NbO3 (Y = Fe, Ni). It is also observed that optical conductivity starting points shift towards the large energy because of bandgap enhancement when the doping concentration (12.5%, 25%, 50%, and 75%) of [Fe] and [Ni] increased in K1−x Yx NbO3 (Y = Fe,Abstract: The First principle study based on Density Function Theory (DFT) was accomplished to explore the electronic bandgap configurations of KNbO3 by transition metal doping such as Iron [Fe], and Nickel [Ni] using PBE-GGA (Perdew–Burke–Ernzerhof- Generalized Gradient Approximation) for the exchange-correlation potentials. In the current study K1−x Yx NbO3 doped with various percentages (12.5%, 25%, 50%, and 75%) of [Ni] and [Fe] metal ions. Different unique properties such as electronic, optical conductivity, and magnetic properties of cubic K1−x Yx NbO3 (Y = Fe, Ni) compounds have been calculated through the FP-LAW WEIN2k software within DFT. The bandgap of KNbO3 can be reduced by doping various metal ions such as [Ni] and [Fe]. The spin up band structures was observed semiconductor but spin down metallic behaviour. The bandgap structure of overall K1−x Yx NbO3 (Y = Fe, Ni) compound after doping [Fe] and [Ni] with various concentrations become half metallic compound. Under the DFT scheme, iron [Fe] and nickel [Ni] are reliable as dopants for reducing the bandgap of KNbO3 . After substituting various impurity concentration (12.5%, 25%, 50%, and 75%) of [Fe] and [Ni] the energy absorption peaks are 8.2 to 8.43eV for K1−x Yx NbO3 (Y = Fe, Ni). It is also observed that optical conductivity starting points shift towards the large energy because of bandgap enhancement when the doping concentration (12.5%, 25%, 50%, and 75%) of [Fe] and [Ni] increased in K1−x Yx NbO3 (Y = Fe, Ni) compound. Magnetic moment was increasing 1.00153 to 3.02210 μ B by the increment of doping [Fe] and [Ni] concentrations. K1−x Yx NbO3 (Y = Fe, Ni) compounds are appropriate perovskite oxides materials for promising optical, magnetic and photovoltaic device applications. … (more)
- Is Part Of:
- Physica scripta. Volume 96:Number 12(2021)
- Journal:
- Physica scripta
- Issue:
- Volume 96:Number 12(2021)
- Issue Display:
- Volume 96, Issue 12 (2021)
- Year:
- 2021
- Volume:
- 96
- Issue:
- 12
- Issue Sort Value:
- 2021-0096-0012-0000
- Page Start:
- Page End:
- Publication Date:
- 2021-10-19
- Subjects:
- electronic -- optical -- magnetic properties -- WEIN2k -- GGA
Physics -- Periodicals
530.05 - Journal URLs:
- http://iopscience.iop.org/1402-4896/ ↗
http://www.physica.org/ ↗
http://www.iop.org/ ↗ - DOI:
- 10.1088/1402-4896/ac198d ↗
- Languages:
- English
- ISSNs:
- 0031-8949
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 25619.xml