Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Materials science, Nanotechnology, Photocatalysis, Degradation (telecommunications), Doping, and Supercapacitor.
Tuning Gas Sensing Properties through Metal-Nanocluster Functionalization of 3D SnO<sub>2</sub> Nanotube Arrays for Selective Gas Detection
Highly sulfur-doped porous carbon enhances sodium-ion storage with superior rate capability and long cycling stability
Enhanced photocatalytic degradation of organic pollutants using Z-scheme CN/WO3 composites under visible light irradiation
S-scheme heterojunction FeS2/BaFe12O19 by in-situ sulfurization strategy for boosting photocatalytic degradation activity
Broad-spectrum-driven g-C3N4/SnFe2O4 S-scheme heterojunction with enhanced H2O2 activation for efficient antibiotic degradation
Enhanced hydrogen production via piezo-photocatalytic water splitting using BaTiO3 crystal phase engineering
Fingertip-chip sensor based on Pd nanocluster sensitized 3D NiO nanotube arrays for real-time, selective methane detection
Development of a Three-Dimensional Nanostructure SnO2-Based Gas Sensor for Room-Temperature Hydrogen Detection
Enhancing low-temperature H<sub>2</sub>S sensing performance of SnO<sub>2</sub> quantum wires <i>via</i> transition metal doping and oxygen vacancy engineering
Integration of Silver Nanoparticles into Carbon-Encapsulated Tungsten Oxide Promoting Visible-Light-Driven Photocatalytic Degradation Efficiency
Nano-Schottky-junction-engineered Pd/SnO<sub>2</sub> nanotube array for ultrasensitive hydrogen sensing at room temperature
Facet-engineered NaNbO<sub>3</sub> cubes with exposed (101) plane for enhanced lithium-ion storage
Unveiling the Doping Effect of Sub-4 nm Ultrathin SnO<sub>2</sub> Quantum Wires on Gas Sensors
Metal-decorated 3D tin oxide nanotubes in a monolithic sensor array chip for room-temperature gas identification
Solution-processed metal doping of sub-3 nm SnO<sub>2</sub> quantum wires for enhanced H<sub>2</sub>S sensing at low temperature
Metastable Antimony‐Doped SnO<sub>2</sub> Quantum Wires for Ultrasensitive Gas Sensors
Graphene Oxide-Loaded SnO<sub>2</sub> Quantum Wires with Sub-4 Nanometer Diameters for Low-Temperature H<sub>2</sub>S Gas Sensing
Smart in situ construction of NiS/MoS2 composite nanosheets with ultrahigh specific capacity for high-performance asymmetric supercapacitor
Preparation of oxygen-deficient 2D WO3−x nanoplates and their adsorption behaviors for organic pollutants: equilibrium and kinetics modeling
Fully Stretchable and Humidity-Resistant Quantum Dot Gas Sensors
Graphene oxide-modified LaVO<sub>4</sub>nanocomposites with enhanced photocatalytic degradation efficiency of antibiotics
Interfacial self-assembly of monolayer Mg-doped NiO honeycomb structured thin film with enhanced performance for gas sensing
Facile preparation of NiFe2O4/MoS2 composite material with synergistic effect for high performance supercapacitor
Construction of molybdenum dioxide nanosheets coated on the surface of nickel ferrite nanocrystals with ultrahigh specific capacity for hybrid supercapacitor
AgX/graphite-like C3N4 (X = Br, I) hybrid materials for photoelectrochemical determination of copper(ii) ion