Area of research
Materials Chemistry · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Materials science, Polysulfide, Photocatalysis, Chemical engineering, Cathode, and Sulfur.
Sandwich-type CoSe2-CNWs@NG as host for lithium-sulfur batteries with high sulfur loading, ultrahigh rate, and long lifespan
Microgram-Level Ta<sub>4</sub>C<sub>3</sub> Nanosheets Decorated with NiWO<sub>4</sub> Nanoparticles as a High-Performance Humidity Sensor
Interfacial water engineering boosts neutral water reduction
A Two-Dimensional van der Waals Heterostructure with Isolated Electron-Deficient Cobalt Sites toward High-Efficiency CO<sub>2</sub> Electroreduction
Cocklebur-like ZnSe-VO2@rGO nanostructures as host to boost the performance of lithium-sulfur batteries
Sandwich-type CoSe<sub>2</sub>-CNWs@rGO/S composites with efficient trapping and catalytic conversion of polysulfides in lithium–sulfur batteries
Graphdiyne/Graphene Heterostructure: A Universal 2D Scaffold Anchoring Monodispersed Transition-Metal Phthalocyanines for Selective and Durable CO<sub>2</sub> Electroreduction
A special core-shell ZnS-CNTs/S@NH cathode constructed to elevate electrochemical performances of lithium-sulfur batteries
Employing synergetic effect of ZnSe quantum dots and layered Ni(OH) <sub>2</sub> to boost the performance of lithium–sulfur cathodes
Incorporation ZnS quantum dots into carbon nanotubes for high-performance lithium–sulfur batteries
Synthesis of a finger-like MoS<sub>2</sub>@VS<sub>2</sub> micro–nanocomposite with enhanced field emission performance
TaS<sub>2</sub> nanosheet-based ultrafast response and flexible humidity sensor for multifunctional applications
Self-Assembled Vanadium Oxide Nanoflakes for p-Type Ammonia Sensors at Room Temperature
High photocatalytic performance of a type-II α-MoO<sub>3</sub>@MoS<sub>2</sub>heterojunction: from theory to experiment
Firework-shaped TiO<sub>2</sub> microspheres embedded with few-layer MoS<sub>2</sub> as an anode material for excellent performance lithium-ion batteries
Synthesis of the MoS<sub>2</sub>@CuO heterogeneous structure with improved photocatalysis performance and H<sub>2</sub>O adsorption analysis
Multi-slice nanostructured WS<sub>2</sub>@rGO with enhanced Li-ion battery performance and a comprehensive mechanistic investigation
Preparation of hollow microsphere@onion-like solid nanosphere MoS<sub>2</sub>coated by a carbon shell as a stable anode for optimized lithium storage
Novel dual-petal nanostructured WS<sub>2</sub>@MoS<sub>2</sub> with enhanced photocatalytic performance and a comprehensive first-principles investigation
Novel photoluminescence properties and enhanced photocatalytic activities for V<sub>2</sub>O<sub>5</sub>-loaded ZnO nanorods
V 2 O 5 nanoparticles grown on ZnO nanowires for enhanced field emission properties
Synthesis of Au-Decorated V<sub>2</sub>O<sub>5</sub>@ZnO Heteronanostructures and Enhanced Plasmonic Photocatalytic Activity
The combinations of hollow MoS<sub>2</sub> micro@nano-spheres: one-step synthesis, excellent photocatalytic and humidity sensing properties
Facile synthesis of novel MoS<sub>2</sub>@SnO<sub>2</sub> hetero-nanoflowers and enhanced photocatalysis and field-emission properties
Enhanced field emission and photocatalytic performance of MoS<sub>2</sub> titania nanoheterojunctions via two synthetic approaches
Low-temperature CVD synthesis of patterned core–shell VO<sub>2</sub>@ZnO nanotetrapods and enhanced temperature-dependent field-emission properties
Two-step synthesis of novel Cu2S nanoflowers for field emission application
Influence of morphologies and pseudocapacitive contributions for charge storage in V2O5 micro/nano-structures
Marigold-like Cu x ( x = 1.81 , 2 ) S $\mbox{Cu}_{x (x=1.81, 2)}\mbox{S}$ nanocrystals: controllable synthesis, field emission, and photocatalytic properties
Porous V2O5 micro/nano-tubes: Synthesis via a CVD route, single-tube-based humidity sensor and improved Li-ion storage properties