Abdel Bachri
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Professor of Physics / Dean of The College of Science and Engineering
Also affiliated: Oklahoma State University (2006–2008)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Abdel Bachri's research has explored the functional properties of advanced materials, including MXenes for wearable electronics and gold nanorods for plasmon resonance tuning. His work has also extended to the prediction of dielectric properties in nanocomposites for flexible capacitors, utilizing deep neural networks.
Bachri has received federal funding for his research endeavors, including a $399,997 grant from the National Science Foundation (NSF) as Principal Investigator for the "Collaborative Research: EPIIC: Supporting Partnerships for Advancement, Research, and Knowledge (SPARK)" project. He has authored 14 publications with 176 citations and maintains an h-index of 6. Bachri collaborates with researchers from Southern Arkansas University, including Bouchaib Zazoum and Puskar Chapagain, as well as Grégory Guisbiers from the University of Arkansas at Little Rock and Mourad Benamara from the University of Arkansas at Fayetteville.
Metrics
- h-index: 7
- Publications: 14
- Citations: 196
Positions
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Professor of Physics / Dean of The College of Science and Engineering publications 2008–2021Southern Arkansas University Institution web page
Selected Publications
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Functional 2D MXene Inks for Wearable Electronics (2021)
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Tuning the Surface Plasmon Resonance of Gold Dumbbell Nanorods (2021)
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Deep Neural Network for Dielectric Properties Prediction of PVDF/BaTiO3 Nanocomposites for Flexible Capacitors (2021)
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Modeling of Mechanical Properties of Clay-Reinforced Polymer Nanocomposites Using Deep Neural Network (2020)
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Radiation‐induced endothelial dysfunction markers are differentially modulated by simulated microgravity (2018)
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High-pressure xenon time projection Titanium chamber: a methodology for detecting background radiation in neutrinoless double-beta decay experiments (2017)
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The Vitamin E Analog Gamma-Tocotrienol (GT3) Suppresses Radiation-Induced Cytogenetic Damage (2016)
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Flux Variation of Cosmic Muons (2011)
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Analysis of Gamma Rays and Cosmic Muons with a Single Detector (2011)
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Analysis of Gamma Rays and Cosmic Muons with a Single Detector (2010)
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PREDICTIVE MODEL OF INVERTED NEUTRINO MASS HIERARCHY AND RESONANT LEPTOGENESIS (2008)
Federal Grants 1 $399,997 total
Collaboration Network
Top Collaborators
- Functional 2D MXene Inks for Wearable Electronics
- Modeling of Mechanical Properties of Clay-Reinforced Polymer Nanocomposites Using Deep Neural Network
- Deep Neural Network for Dielectric Properties Prediction of PVDF/BaTiO3 Nanocomposites for Flexible Capacitors
- High-pressure xenon time projection Titanium chamber: a methodology for detecting background radiation in neutrinoless double-beta decay experiments
- Analysis of Gamma Rays and Cosmic Muons with a Single Detector
- Analysis of Gamma Rays and Cosmic Muons with a Single Detector
- High-pressure xenon time projection Titanium chamber: a methodology for detecting background radiation in neutrinoless double-beta decay experiments
- Analysis of Gamma Rays and Cosmic Muons with a Single Detector
- Analysis of Gamma Rays and Cosmic Muons with a Single Detector
- High-pressure xenon time projection Titanium chamber: a methodology for detecting background radiation in neutrinoless double-beta decay experiments
- Flux Variation of Cosmic Muons
- The Vitamin E Analog Gamma-Tocotrienol (GT3) Suppresses Radiation-Induced Cytogenetic Damage
- Radiation‐induced endothelial dysfunction markers are differentially modulated by simulated microgravity
- The Vitamin E Analog Gamma-Tocotrienol (GT3) Suppresses Radiation-Induced Cytogenetic Damage
- Radiation‐induced endothelial dysfunction markers are differentially modulated by simulated microgravity
- PREDICTIVE MODEL OF INVERTED NEUTRINO MASS HIERARCHY AND RESONANT LEPTOGENESIS
- PREDICTIVE MODEL OF INVERTED NEUTRINO MASS HIERARCHY AND RESONANT LEPTOGENESIS
- Flux Variation of Cosmic Muons
- Flux Variation of Cosmic Muons
- The Vitamin E Analog Gamma-Tocotrienol (GT3) Suppresses Radiation-Induced Cytogenetic Damage
- The Vitamin E Analog Gamma-Tocotrienol (GT3) Suppresses Radiation-Induced Cytogenetic Damage
- The Vitamin E Analog Gamma-Tocotrienol (GT3) Suppresses Radiation-Induced Cytogenetic Damage
- The Vitamin E Analog Gamma-Tocotrienol (GT3) Suppresses Radiation-Induced Cytogenetic Damage
- The Vitamin E Analog Gamma-Tocotrienol (GT3) Suppresses Radiation-Induced Cytogenetic Damage
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