Taohedul Islam
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Post Doctoral Fellow
Also affiliated: University of Aberdeen (1978); University of Dhaka (2005); Bangladesh Agricultural University (2020–2021); Jagannath University (2023); Ocean University of China (2018); Jackson State University (2023–2026)
Postdoc Researcher
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Taohedul Islam's research focuses on the development of advanced electrode materials for energy storage devices, particularly for lithium-ion and sodium-ion batteries. His work involves synthesizing and characterizing novel materials, such as chalcogels, which exhibit high capacity and cycle stability. Islam has investigated porous and amorphous chalcogels based on transition metals like manganese, molybdenum, and cobalt, exploring their potential for conversion-based battery applications.
His publications also touch upon other areas, including the synthesis of iron oxide nanoparticles with catalytic properties for dye removal, and the development of aerogels and layered double hydroxides for ion-exchange and sorbent applications. Islam has collaborated with researchers at the University of Arkansas at Fayetteville and the University of Arkansas at Little Rock on several projects. His scholarly output includes 20 publications with approximately 250 citations and an h-index of 10.
Metrics
- h-index: 11
- Publications: 21
- Citations: 262
Selected Publications
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Poly(ethylene oxide)-Based Composite Solid-Polymer Electrolytes Towards High-Performance All-Solid-State Lithium Metal Batteries (2026)
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A lithium-ion conductive polymeric coating enables high-performance silicon anodes (2026)
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Atomic‐ and Molecular‐Scale Interphase Engineering for High‐Performance Solid‐State Batteries (2026)
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An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (Small 10/2026) (2026)
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Strategies and chemistries for designing poly(ethylene oxide)-based solid-state electrolytes (2026)
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An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (2025)
Collaboration Network
Top Collaborators
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (Small 10/2026)
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- Strategies and chemistries for designing poly(ethylene oxide)-based solid-state electrolytes
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (Small 10/2026)
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (Small 10/2026)
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (Small 10/2026)
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (Small 10/2026)
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (Small 10/2026)
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