Muatez Mohammed
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
Also affiliated: University of Al-Qadisiyah (2014–2017); Conway School of Landscape Design (2020)
Faculty Researcher
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Muatez Mohammed's research investigates various biological and material science topics, with a recent focus on the effects of substances and environmental factors on living organisms and technological systems. His work includes toxicity studies on plant extracts in animal models, examining biochemical parameters in rats to understand metabolic syndrome and cardiovascular disease risk factors. He has also explored the virulence of specific bacterial species isolated from aquatic environments and investigated the impact of environmental factors, such as dust, on photovoltaic cell performance in hot climates. Additionally, Mohammed has contributed to research on the quality of entity resolution in data processing and the distribution of microbial infections in specific communities.
Mohammed's scholarly output is reflected in his h-index of 6 and 21 total publications, which have garnered 214 citations. He actively collaborates with researchers from the University of Arkansas at Little Rock, including John R. Talburt, Mohammad Maqbool Mir, and Adeeba Tarannum, on shared publications. His recent activity indicates ongoing engagement in research, with publications extending to 2025.
Metrics
- h-index: 6
- Publications: 18
- Citations: 216
Selected Publications
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Improving Quality of Entity Resolution Using a Cascade Approach (2025)
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Revealing the Hidden Benefits of Dust for Photovoltaic Performance in Hot Climates (2024)
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Enhanced photovoltaic conversion of ZnO/PANI/NiOx heterostructure devices with ZnO nanorod array (2020)
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Transport Studies on Metal (M) Doped PrBa<sub>2</sub>Cu<sub>3</sub>O<sub>7</sub> (2019)
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Layer characterization and photovoltaic properties of CdS/multi-wall carbon nanotube/n-Si device with an n-p-n transistor structure (2016)
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Acid-doped multi-wall carbon nanotube/n-Si heterojunctions for enhanced light harvesting (2014)
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Double Shottcky of NiOx/graphene/Si for enhance efficiency solar cells (2014)
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Enhanced performance core-sell Si/CdS nanowires heterojunction solar cell device (2014)
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ZnO nanowires/N719 dye/polypyrrole-SWNTs nanocomposite solid state dye sensitized solar cells (2014)
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2-D and Mott Transition Studies on Metal (M) Doped PrBa2Cu3O7 (2013)
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Fabrication and characterization of Si/ZnO branched heterojunction structures (2013)
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Study on ZnO/P3HT:PCBM nanowire solar cells (2013)
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Cu<inf>2</inf>O/SWNTs/n-Si heterojunctions for enhanced light harvesting (2013)
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Junction investigation of graphene/silicon Schottky diodes (2012)
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Electric and optical transport of MWNT/silicon junctions (2012)
Collaboration Network
Top Collaborators
- Revealing the Hidden Benefits of Dust for Photovoltaic Performance in Hot Climates
- Revealing the Hidden Benefits of Dust for Photovoltaic Performance in Hot Climates
- Revealing the Hidden Benefits of Dust for Photovoltaic Performance in Hot Climates
- Revealing the Hidden Benefits of Dust for Photovoltaic Performance in Hot Climates
- Improving Quality of Entity Resolution Using a Cascade Approach
- Improving Quality of Entity Resolution Using a Cascade Approach
- Improving Quality of Entity Resolution Using a Cascade Approach
- Improving Quality of Entity Resolution Using a Cascade Approach
- Improving Quality of Entity Resolution Using a Cascade Approach
- Improving Quality of Entity Resolution Using a Cascade Approach
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