Area of research
Renewable Energy, Sustainability and the Environment · Biomedical Engineering
Research interest
Research focused on Nanotechnology and Energy harvesting, with related work in Composite material, Catalysis, Carbon nanotube. Notable publications include 'Ionogels: recent advances in design, material properties and emerging biomedical applications', 'Coordination engineering of heterogeneous high-valent Fe(IV)-oxo for safe removal of pollutants via powerful Fenton-like reactions', and 'Super Tough and Self-Healable Poly(dimethylsiloxane) Elastomer via Hydrogen Bonding Association and Its Applications as Triboelectric Nanogenerators'.
Self-powered green energy–harvesting and sensing interfaces based on hygroscopic gel and water-locking effects
Hydrogel-induced ANF-MXene-PEDOT:PSS film by ultra-fast protonation for electromagnetic interference shielding
Coordination engineering of heterogeneous high-valent Fe(IV)-oxo for safe removal of pollutants via powerful Fenton-like reactions
Polymer‐Regulating MXene@Dopamine Electroactive Gel‐Inks for Textile‐Based Multi‐Protective Wearables
Na/Bi-co-doping and heterogeneous interfaces leading to enhanced thermoelectric performance of p-type Mg3Sb2-based Zintls
Ionogels: recent advances in design, material properties and emerging biomedical applications
Flexible, durable, green thermoelectric composite fabrics for textile-based wearable energy harvesting and self-powered sensing
Wet-spun flexible carbon nanotubes/polyaniline fibers for wearable thermoelectric energy harvesting
Titanium Nitride-Supported Platinum with Metal–Support Interaction for Boosting Photocatalytic H<sub>2</sub> Evolution of Indium Sulfide
Super Tough and Self-Healable Poly(dimethylsiloxane) Elastomer via Hydrogen Bonding Association and Its Applications as Triboelectric Nanogenerators