Alaa A. Alnami Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
unknown
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Alaa A. Alnami conducts research focused on semiconductor materials and devices, with a particular emphasis on nanostructures for solar cell applications. Their work investigates the temperature-dependent behavior of sub-monolayer quantum dot-based solar cells, aiming to improve efficiency. Alnami has also explored low-resistance Ohmic contacts for graded InGaN. Their research network includes collaborators such as Morgan E. Ware, Najla Alnami, Yuriy I. Mazur, and Reem Alhelais, all from the University of Arkansas at Fayetteville, with whom they have co-authored multiple publications. Alnami's scholarship metrics include an h-index of 2 and 23 total citations across 3 publications.
Metrics
- h-index: 2
- Publications: 3
- Citations: 24
Selected Publications
-
Temperature dependent behavior of sub-monolayer quantum dot based solar cell (2023)
-
Low resistance Ohmic contacts to graded InGaN (2022)
-
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
- 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
- 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
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- InAs nanostructures for solar cell: Improved efficiency by submonolayer quantum dot
- 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
Similar Researchers
Based on overlapping research topics