Najla Alnami
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Formerly Arkansas Affiliated with University of Arkansas through 2023; recent publications list Jazan University.
Unknown Researcher
Research Areas
Biography and Research Information
OverviewAI-generated summary
Najla Alnami's research focuses on semiconductor materials and devices, particularly as applied to solar cell technology and advanced ceramic structures. Her work investigates nanostructures, such as InAs quantum dots, to improve solar cell efficiency, with publications exploring temperature-dependent behaviors and the impact of submonolayer quantum dots. Alnami also studies the properties of high-entropy materials, including tungsten bronze ceramics, for applications in radiation shielding and dielectric performance. Her research includes work on low-resistance Ohmic contacts to graded InGaN, contributing to the development of advanced electronic components. Alnami collaborates with researchers at the University of Arkansas at Fayetteville, including Morgan E. Ware, Alaa A. Alnami, Yuriy I. Mazur, and Reem Alhelais, on shared publications.
Metrics
- h-index: 3
- Publications: 4
- Citations: 28
Selected Publications
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Temperature dependent behavior of sub-monolayer quantum dot based solar cell (2023)
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Low resistance Ohmic contacts to graded InGaN (2022)
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InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot (2021)
Collaboration Network
Top Collaborators
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Temperature dependent behavior of sub-monolayer quantum dot based solar cell
- Low resistance Ohmic contacts to graded InGaN
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Temperature dependent behavior of sub-monolayer quantum dot based solar cell
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Temperature dependent behavior of sub-monolayer quantum dot based solar cell
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Low resistance Ohmic contacts to graded InGaN
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Low resistance Ohmic contacts to graded InGaN
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Temperature dependent behavior of sub-monolayer quantum dot based solar cell
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Temperature dependent behavior of sub-monolayer quantum dot based solar cell
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- Low resistance Ohmic contacts to graded InGaN
- Low resistance Ohmic contacts to graded InGaN
- Temperature dependent behavior of sub-monolayer quantum dot based solar cell
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