Qinglong Jiang
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Researcher
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Biography and Research Information
OverviewAI-generated summary
Qinglong Jiang's research focuses on materials science, with a particular emphasis on developing novel composite films for applications in energy conversion and electromagnetic wave absorption. His work investigates materials such as reduced graphene oxide, poly(vinylidene fluoride), and metal-encapsulated nanoparticles to enhance properties like microwave absorption and light emission.
Jiang is the Principal Investigator on the NSF-funded ExpandQISE project, "Expanding Quantum Research and Education at the University of Arkansas at Pine Bluff (QuAPB)," which received $5,000,000. This grant supports efforts to expand quantum information science and engineering research and education at the institution.
His publication record includes studies on electrocatalysts for rechargeable zinc-air batteries, composite films for microwave absorption, and perovskite-polymer composites for light-emitting devices. Jiang has collaborated with researchers from the University of Arkansas at Pine Bluff and the University of Arkansas at Little Rock.
Metrics
- h-index: 4
- Publications: 6
- Citations: 198
Selected Publications
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Perfect-Absorbing Symmetrical Cross-Bar Metamaterials for Advanced Infrared Sensing Application (2026)
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Editorial expression of concern: an overview of polylactic acid (PLA) nanocomposites for sensors (2026)
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Halide perovskite-polymer composite film for bright and stable light-emitting devices (2025)
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Halide perovskite and polymer composite film for bright light emitting devices (2024)
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Poly(Vinylidene Fluoride)/Cu@Ni Anchored Reduced-graphene Oxide Composite Films with Folding Movement to Boost Microwave Absorption Properties (2021)
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An Overview of Oxygen Reduction Electrocatalysts for Rechargeable Zinc-Air Batteries Enabled by Carbon and Carbon Composites (2021)
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Starch-based Carbon Nanotubes and Graphene: Preparation, Properties and Applications (2020)
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With Corona Virus, We Get Sick; With the Weapon of Science and Engineering, We Fight Back? (2020)
Federal Grants 1 $5,000,000 total
Collaboration Network
Top Collaborators
- Poly(Vinylidene Fluoride)/Cu@Ni Anchored Reduced-graphene Oxide Composite Films with Folding Movement to Boost Microwave Absorption Properties
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- Halide perovskite-polymer composite film for bright and stable light-emitting devices
- Halide perovskite and polymer composite film for bright light emitting devices
- An Overview of Oxygen Reduction Electrocatalysts for Rechargeable Zinc-Air Batteries Enabled by Carbon and Carbon Composites
- An Overview of Oxygen Reduction Electrocatalysts for Rechargeable Zinc-Air Batteries Enabled by Carbon and Carbon Composites
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