Atikur Rahman
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Graduate Assistant
Unknown Researcher
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Biography and Research Information
OverviewAI-generated summary
Atikur Rahman's research focuses on the synthesis and characterization of nanomaterials, particularly through pulsed laser ablation in liquids. His work includes tailoring the optical properties of selenium nanoneedles for applications in solar cells and photocells. He has also investigated the synthesis of nickel-based nanoparticles, correlating laser parameters with their size distribution and cavitation bubble lifetime. Additionally, his research extends to materials science applications, such as producing nanostructured antibacterial aluminum foil for use in meat packaging. Rahman has collaborated with researchers from the University of Arkansas at Little Rock and the National Center for Toxicological Research on these projects. His scholarly contributions are reflected in a h-index of 4 and 37 citations across his publications.
Metrics
- h-index: 4
- Publications: 4
- Citations: 40
Selected Publications
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Synthesis of trigonal selenium rods, wires and fibers by pulsed laser ablation in ethanol (2024)
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Phytochemical Profiling and Antimicrobial Properties of Various Sweet Potato (Ipomoea batatas L.) Leaves Assessed by RP-HPLC-DAD (2024)
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Synthesis of Nickel-Based Nanoparticles by Pulsed Laser Ablation in Liquids: Correlations between Laser Beam Power, Size Distribution and Cavitation Bubble Lifetime (2024)
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Tailoring the Optical Properties of Selenium Nanoneedles by Pulsed Laser Ablation in Liquids: Implications for Solar Cells and Photocells (2023)
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Nanostructured antibacterial aluminum foil produced by hot water treatment against E. coli in meat (2021)
Collaboration Network
Top Collaborators
- Tailoring the Optical Properties of Selenium Nanoneedles by Pulsed Laser Ablation in Liquids: Implications for Solar Cells and Photocells
- Synthesis of Nickel-Based Nanoparticles by Pulsed Laser Ablation in Liquids: Correlations between Laser Beam Power, Size Distribution and Cavitation Bubble Lifetime
- Synthesis of trigonal selenium rods, wires and fibers by pulsed laser ablation in ethanol
- Nanostructured antibacterial aluminum foil produced by hot water treatment against E. coli in meat
- Nanostructured antibacterial aluminum foil produced by hot water treatment against E. coli in meat
- Nanostructured antibacterial aluminum foil produced by hot water treatment against E. coli in meat
- Nanostructured antibacterial aluminum foil produced by hot water treatment against E. coli in meat
- Nanostructured antibacterial aluminum foil produced by hot water treatment against E. coli in meat
- Nanostructured antibacterial aluminum foil produced by hot water treatment against E. coli in meat
- Nanostructured antibacterial aluminum foil produced by hot water treatment against E. coli in meat
- Nanostructured antibacterial aluminum foil produced by hot water treatment against E. coli in meat
- Tailoring the Optical Properties of Selenium Nanoneedles by Pulsed Laser Ablation in Liquids: Implications for Solar Cells and Photocells
- Tailoring the Optical Properties of Selenium Nanoneedles by Pulsed Laser Ablation in Liquids: Implications for Solar Cells and Photocells
- Phytochemical Profiling and Antimicrobial Properties of Various Sweet Potato (Ipomoea batatas L.) Leaves Assessed by RP-HPLC-DAD
- Phytochemical Profiling and Antimicrobial Properties of Various Sweet Potato (Ipomoea batatas L.) Leaves Assessed by RP-HPLC-DAD
- Phytochemical Profiling and Antimicrobial Properties of Various Sweet Potato (Ipomoea batatas L.) Leaves Assessed by RP-HPLC-DAD
- Phytochemical Profiling and Antimicrobial Properties of Various Sweet Potato (Ipomoea batatas L.) Leaves Assessed by RP-HPLC-DAD
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