Bothina Hamad Source Confirmed
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Researcher
University of Arkansas at Fayetteville
faculty
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Biography and Research Information
OverviewAI-generated summary
Bothina Hamad's research focuses on first-principles investigations of materials, particularly Heusler alloys, for spintronic and thermoelectric applications. Her work utilizes computational methods to study the electronic, magnetic, and thermal properties of various quaternary Heusler alloys, including Zr-based and VTiRhZ systems. She has also investigated the effects of temperature and lattice dynamics on the thermal conductivity of materials like ZrS2 monolayers and 2D InTe monolayers. Her research extends to examining the electronic, magnetic, and optical properties of ferrimagnetic Heusler alloys. Hamad has authored or co-authored over 130 publications, with an h-index of 19 and over 1,100 citations. She has established research collaborations with several faculty members at the University of Arkansas at Fayetteville, including M. O. Manasreh and Solomon Ojo.
Metrics
- h-index: 19
- Publications: 131
- Citations: 1,188
Selected Publications
- The electronic and magnetic properties of alloyed Ti1-xYxSe2 (Y=V, Cr, Mn; x= 0.11, 0.44, 0.89, 1.00) systems: Ab-initio calculations (2026) DOI
- Optical spectroscopy of excitons in ReS2 monolayers grown by chemical vapor deposition (2025) DOI
- The effect of uniaxial compressive and tensile strains on the structural, dynamical, electronic, and optical properties of ZrCl2 monolayer: Ab-initio calculations (2025) DOI
- Theoretical Investigations of Mechanical, Magnetic and Thermoelectric Properties of Zr2vx(X= Al, Ga, in) Full Heusler Alloys (2024) DOI
- Optical Spectroscopy of Excitons in Res2 Monolayers Grown by Chemical Vapor Deposition (2024) DOI
- The Chalcogen (S, Se, and Te) Doping Effects on the Structural and Electronic Properties of Anatase (101) TiO<sub>2</sub> Thin Surface Layers: DFT Study (2024) DOI
- Optical Spectroscopy of Excitons in Res2 Monolayers Grown by Chemical Vapor Deposition (2024) DOI
- Electronic, magnetic, and optical properties of ferrimagnet Heusler alloys Zr2VX (X=Al, Ga, and In) (2024) DOI
- Ab initio study of the energetic, structural, electronic and magnetic properties of 4d transition metal (M = Ru, Rh, Pd, Ag) on Ni(100) surface (2024) DOI
- Self-consistent phonon calculations and quartic anharmonic lattice thermal conductivity in 2D InS monolayer (2024) DOI
- Effect of strain profiling on anisotropic opto-electronic properties of As2X3 (X =S, Te) monolayers from first principles (2024) DOI
- Theoretical Investigations of the Structural, Dynamical, Electronic, Magnetic, and Thermoelectric Properties of CoMRhSi (M = Cr, Mn) Quaternary Heusler Alloys (2023) DOI
- Theoretical Investigations of the Structural, Dynamical, Electronic, Magnetic, and Thermoelectric Properties of Coyrhsi (Y = Cr, Mn) Quaternary Heusler Alloys (2023) DOI
- First-principal investigations of the electronic, magnetic, and thermoelectric properties of CrTiRhAl quaternary Heusler alloy (2023) DOI
- First-Principal Investigations of the Electronic, Magnetic, and Thermoelectric Properties of Crtirhal Quaternary Heusler Alloy (2022) DOI
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