Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Catalysis, Bifunctional, Nanofiber, Overpotential, and Electrospinning.
Interfacial Water Orientation in Neutral Oxygen Catalysis for Reversible Ampere‐Scale Zinc‐Air Batteries
Electrospinning of nanofibres
Kirkendall oxidation tailors lattice strain in transition metal oxides for efficient oxygen electrocatalysis
Selective spectral absorption of nanofibers for color-preserving daytime radiative cooling
Bioresource Upgrade for Sustainable Energy, Environment, and Biomedicine
Flexible Textile-Based Sweat Sensors for Wearable Applications
Emerging design principles, materials, and applications for moisture-enabled electric generation
Boosting piezoelectric and triboelectric effects of PVDF nanofiber through carbon-coated piezoelectric nanoparticles for highly sensitive wearable sensors
Tailoring body surface infrared radiation behavior through colored nanofibers for efficient passive radiative heating textiles
Electrospun ultrafine fibers for advanced face masks
The need for fully bio-based facemasks to counter coronavirus outbreaks: A perspective
Engineering of the Heterointerface of Porous Carbon Nanofiber–Supported Nickel and Manganese Oxide Nanoparticle for Highly Efficient Bifunctional Oxygen Catalysis
Electrospun nanofibers for personal protection in mines
Micro/nanofiber-based noninvasive devices for health monitoring diagnosis and rehabilitation
Addressing the worldwide shortages of face masks
Electro-Hydrodynamic Direct-Writing Technology toward Patterned Ultra-Thin Fibers: Advances, Materials and Applications
The Kirkendall Effect for Engineering Oxygen Vacancy of Hollow Co<sub>3</sub>O<sub>4</sub> Nanoparticles toward High‐Performance Portable Zinc–Air Batteries
Atomically Transition Metals on Self‐Supported Porous Carbon Flake Arrays as Binder‐Free Air Cathode for Wearable Zinc−Air Batteries
The Kirkendall Effect for Engineering Oxygen Vacancy of Hollow Co<sub>3</sub>O<sub>4</sub> Nanoparticles toward High‐Performance Portable Zinc–Air Batteries
3D Printing of Highly Pure Copper
Carbon‐Based Alloy‐Type Composite Anode Materials toward Sodium‐Ion Batteries
Strong, lightweight, and highly conductive CNT/Au/Cu wires from sputtering and electroplating methods
Necklace-like Multishelled Hollow Spinel Oxides with Oxygen Vacancies for Efficient Water Electrolysis
Electronic and Defective Engineering of Electrospun CaMnO<sub>3</sub> Nanotubes for Enhanced Oxygen Electrocatalysis in Rechargeable Zinc–Air Batteries
Restriction of Molecular Rotors in Ultrathin Two-Dimensional Covalent Organic Framework Nanosheets for Sensing Signal Amplification
Hierarchical catalytic electrodes of cobalt-embedded carbon nanotube/carbon flakes arrays for flexible solid-state zinc-air batteries
Electrospun hollow nanofibers for advanced secondary batteries
Thin MoS<sub>2</sub>nanosheets grafted MOFs-derived porous Co–N–C flakes grown on electrospun carbon nanofibers as self-supported bifunctional catalysts for overall water splitting
Cobalt nanoparticles encapsulated in carbon nanotube-grafted nitrogen and sulfur co-doped multichannel carbon fibers as efficient bifunctional oxygen electrocatalysts