Fumiya Watanabe
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Director of Instrumentation
Also affiliated: Florida State University (2012); University of Notre Dame (2010); Tokyo Institute of Technology (2015–2020); NEC (Japan) (1986–1987); University of Miyazaki (2017); Kyushu University (1995–2002); University of Illinois Urbana-Champaign (1986–2006); Universidade Federal do Ceará (1996); Fukuyama University (2017); IBM Research - Almaden (1993–1995); Japan Science and Technology Agency (2016); Applied Nanotech (United States) (2014–2025); Osaka Health Science University (2019); Fukuda Denshi (Japan) (2025); National High Magnetic Field Laboratory (2012); National Institute for Research and Development of Isotopic and Molecular Technologies (2010); Conway School of Landscape Design (2009); University of Houston (2012); Saitama University (2011–2014); Chiba Institute of Technology (2018–2020); The University of Osaka (2015–2019)
Faculty Researcher
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Fumiya Watanabe's research focuses on the development and application of advanced materials and instrumentation, particularly in areas related to nanoscience, semiconductors, and biomedical applications. His work has involved the synthesis and characterization of various nanomaterials, including bismuth oxide, vanadium pentoxide, silver, gold, and tellurium dioxide nanoparticles, exploring their potential as antibacterial agents and for biomedical uses. He has also investigated novel materials for energy storage, such as phosphorus and nitrogen co-doped carbon derived from molasses, and developed advanced coatings for lithium metal anodes to address performance and stability issues.
Watanabe's expertise extends to the development of new instruments and processing techniques. This includes work on high-voltage ultrafast electronic circuitry, electron and ion optics, and micromachines (MEMS). He has applied molecular beam techniques in semiconductor processing, including UV/ozone processing, chemical vapor deposition (CVD), and physical vapor deposition (PVD). His research has also focused on developing CVD techniques for ultra-thin silicon carbide, silicon nitride, and photoluminescent films, including rare earth doping, as well as advanced processing for lithography and data storage.
His academic background includes a Ph.D. in Metallurgical Engineering from the University of Illinois at Urbana-Champaign, with a dissertation on "Direct Determination of Interactions at Surfaces." He has authored or co-authored over 230 publications and has an h-index of 38, with more than 6,500 citations. Watanabe is a recognized high-impact researcher, evidenced by his highly cited status.
Metrics
- h-index: 38
- Publications: 237
- Citations: 6,636
Selected Publications
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Nanoencapsulated gamma-oryzanol enhances fibroblast proliferation, migration, and reduces oxidative stress in H2O2-induced cellular aging model (2025)
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An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes (2025)
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Tunable WO <sub>2.9</sub> Volume for Boosted Photocatalytic Efficiency in Cu <sub>2</sub> O Based Z-Scheme Systems (2025)
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Counterion Effects of Protic Ionic Liquids on the Conductivity and Stretchability of Free-Standing PEDOT:PSS Films (2025)
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Glancing Angle Deposited Nanostructured Tellurium Layer Against Dendrite Formation and Side Reactions in Aqueous Zn-Ion Battery Anode (2025)
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<i>Z</i>-Scheme Tungsten Copper Oxide for Photocatalytic Water Splitting (2025)
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Halide perovskite-polymer composite film for bright and stable light-emitting devices (2025)
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A single-step low-cost synthesis of tungsten oxide nanostructures by resistive hot wire oxidation (2024)
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Exploring Enhanced Oxygen Reduction Reactions: A Study on Nanocellulose, Dopamine, and Cobalt Complex-Derived Non-Precious Electrocatalyst (2024)
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Halide perovskite and polymer composite film for bright light emitting devices (2024)
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A novel polymeric lithicone coating for superior lithium metal anodes (2024)
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Comparative Study of Chemical Activation and Physical Activation Approach to Optimize Biomass-Based Doped Carbons for Energy Applications (2024)
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Atomic layer deposition of two-dimensional layered zirconium sulfide (2024)
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Tuning Fabrication Factors for Reduced Graphene Oxide Forward Osmosis Membranes (2024)
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Tackling issues of lithium metal anodes with a novel polymeric lithicone coating (2023)
Collaboration Network
Top Collaborators
- Effect of KOH on the Energy Storage Performance of Molasses-Based Phosphorus and Nitrogen Co-Doped Carbon
- Influence of phosphorus and nitrogen co-doping of activated carbon from littered cigarette filters for adsorption of methylene blue dye from wastewater
- Characterization and Electrocatalytic Performance of Molasses Derived Co-Doped (P, N) and Tri-Doped (Si, P, N) Carbon for the ORR
- Synthesis and Characterization of Supercapacitor Materials from Soy
- Comparative Study of Chemical Activation and Physical Activation Approach to Optimize Biomass-Based Doped Carbons for Energy Applications
Showing 5 of 8 shared publications
- Surface Passivation of Triple-Cation Perovskite via Organic Halide-Saturated Antisolvent for Inverted Planar Solar Cells
- Cellular Uptake of Gold Nanorods in Breast Cancer Cell Lines
- Towards rainbow portable Cytophone with laser diodes for global disease diagnostics
- Gold Nanorod Substrate for Rat Fetal Neural Stem Cell Differentiation into Oligodendrocytes
- Gold nanorods enhance different immune cells and allow for efficient targeting of CD4+ Foxp3+ Tregulatory cells
Showing 5 of 7 shared publications
- Synthesis of “Naked” TeO<sub>2</sub>Nanoparticles for Biomedical Applications
- Surface Passivation of Triple-Cation Perovskite via Organic Halide-Saturated Antisolvent for Inverted Planar Solar Cells
- Dendritic cell biocompatibility of ether‐based urethane films
- Improved efficiency of inverted planar perovskite solar cells with an ultrahigh work function doped polymer as an alternative hole transport layer
- A single-step low-cost synthesis of tungsten oxide nanostructures by resistive hot wire oxidation
Showing 5 of 6 shared publications
- Effect of KOH on the Energy Storage Performance of Molasses-Based Phosphorus and Nitrogen Co-Doped Carbon
- Influence of phosphorus and nitrogen co-doping of activated carbon from littered cigarette filters for adsorption of methylene blue dye from wastewater
- Characterization and Electrocatalytic Performance of Molasses Derived Co-Doped (P, N) and Tri-Doped (Si, P, N) Carbon for the ORR
- Synthesis and Characterization of Supercapacitor Materials from Soy
- Comparative Study of Chemical Activation and Physical Activation Approach to Optimize Biomass-Based Doped Carbons for Energy Applications
Showing 5 of 6 shared publications
- Effect of KOH on the Energy Storage Performance of Molasses-Based Phosphorus and Nitrogen Co-Doped Carbon
- Influence of phosphorus and nitrogen co-doping of activated carbon from littered cigarette filters for adsorption of methylene blue dye from wastewater
- Characterization and Electrocatalytic Performance of Molasses Derived Co-Doped (P, N) and Tri-Doped (Si, P, N) Carbon for the ORR
- Phosphorus and nitrogen co-doped carbon derived from Cigarette Filter for adsorption of methylene blue dye from aqueous solution
- Bi<sub>2</sub>O<sub>3</sub> nano-flakes as a cost-effective antibacterial agent
- Synthesis of naked vanadium pentoxide nanoparticles
- Synthesis of “Naked” TeO<sub>2</sub>Nanoparticles for Biomedical Applications
- Nanoencapsulated gamma-oryzanol enhances fibroblast proliferation, migration, and reduces oxidative stress in H2O2-induced cellular aging model
- A novel polymeric lithicone coating for superior lithium metal anodes
- Tackling issues of lithium metal anodes with a novel polymeric lithicone coating
- Atomic layer deposition of two-dimensional layered zirconium sulfide
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- A novel polymeric lithicone coating for superior lithium metal anodes
- Tackling issues of lithium metal anodes with a novel polymeric lithicone coating
- Atomic layer deposition of two-dimensional layered zirconium sulfide
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- A novel polymeric lithicone coating for superior lithium metal anodes
- Tackling issues of lithium metal anodes with a novel polymeric lithicone coating
- Atomic layer deposition of two-dimensional layered zirconium sulfide
- An Oxygen‐Scavenger Sulfide Coating Enabling Long‐Term Stable Nickel‐Rich Cathodes
- Exploring Enhanced Oxygen Reduction Reactions: A Study on Nanocellulose, Dopamine, and Cobalt Complex-Derived Non-Precious Electrocatalyst
- A single-step low-cost synthesis of tungsten oxide nanostructures by resistive hot wire oxidation
- <i>Z</i>-Scheme Tungsten Copper Oxide for Photocatalytic Water Splitting
- Tunable WO <sub>2.9</sub> Volume for Boosted Photocatalytic Efficiency in Cu <sub>2</sub> O Based Z-Scheme Systems
- Effect of KOH on the Energy Storage Performance of Molasses-Based Phosphorus and Nitrogen Co-Doped Carbon
- Synthesis and Characterization of Supercapacitor Materials from Soy
- Comparative Study of Chemical Activation and Physical Activation Approach to Optimize Biomass-Based Doped Carbons for Energy Applications
- Enhancing the antibacterial efficacy of aluminum foil by nanostructuring its surface using hot water treatment <sup>*</sup>
- In Situ Growth and UV Photocatalytic Effect of ZnO Nanostructures on a Zn Plate Immersed in Methylene Blue
- Glancing Angle Deposited Nanostructured Tellurium Layer Against Dendrite Formation and Side Reactions in Aqueous Zn-Ion Battery Anode
- Synthesis of “Naked” TeO<sub>2</sub>Nanoparticles for Biomedical Applications
- A single-step low-cost synthesis of tungsten oxide nanostructures by resistive hot wire oxidation
- <i>Z</i>-Scheme Tungsten Copper Oxide for Photocatalytic Water Splitting
- A single-step low-cost synthesis of tungsten oxide nanostructures by resistive hot wire oxidation
- <i>Z</i>-Scheme Tungsten Copper Oxide for Photocatalytic Water Splitting
- Tunable WO <sub>2.9</sub> Volume for Boosted Photocatalytic Efficiency in Cu <sub>2</sub> O Based Z-Scheme Systems
- A single-step low-cost synthesis of tungsten oxide nanostructures by resistive hot wire oxidation
- <i>Z</i>-Scheme Tungsten Copper Oxide for Photocatalytic Water Splitting
- Tunable WO <sub>2.9</sub> Volume for Boosted Photocatalytic Efficiency in Cu <sub>2</sub> O Based Z-Scheme Systems
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