Area of research
Artificial Intelligence · Computer Networks and Communications
Research interest
Research interests include Materials science, Graphene, Supercapacitor, Anode, Nanotechnology, and Polypyrrole.
One-Pot Hydrothermal Synthesis of Solution-Processable MoS<sub>2</sub>/PEDOT:PSS Composites for High-Performance Supercapacitors
Tunable Conducting Polymers: Toward Sustainable and Versatile Batteries
Binder‐Free Electrodes Derived from Interlayer‐Expanded MoS<sub>2</sub> Nanosheets on Carbon Cloth with a 3D Porous Structure for Lithium Storage
Towards thermally stable high performance lithium-ion batteries: the combination of a phosphonium cation ionic liquid and a 3D porous molybdenum disulfide/graphene electrode
Tuning the structure of three dimensional nanostructured molybdenum disulfide/nitrogen-doped carbon composite for high lithium storage
Self-Assembly of Flexible Free-Standing Three-Dimensional Porous MoS<sub>2</sub>-Reduced Graphene Oxide Film for High-Performance Lithium-Ion Batteries
Recent progress in 2D materials for flexible supercapacitors
Self‐Assembly of Flexible Free‐Standing 3D Porous MoS<sub>2</sub>‐Reduced Graphene Oxide Structure for High‐Performance Lithium‐Ion Batteries
High-performance hybrid carbon nanotube fibers for wearable energy storage
A robust free-standing MoS2/poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) film for supercapacitor applications
An Electrosynthesized 3D Porous Molybdenum Sulfide/Graphene Film with Enhanced Electrochemical Performance for Lithium Storage
Toward Biodegradable Mg–Air Bioelectric Batteries Composed of Silk Fibroin–Polypyrrole Film
A Free-standing Graphene-Polypyrrole Hybrid Paper via Electropolymerization with an Enhanced Areal Capacitance
Manganese dioxide-anchored three-dimensional nitrogen-doped graphene hybrid aerogels as excellent anode materials for lithium ion batteries
A facile approach for fabrication of mechanically strong graphene/polypyrrole films with large areal capacitance for supercapacitor applications
Ammonia borane confined by nitrogen-containing carbon nanotubes: enhanced dehydrogenation properties originating from synergetic catalysis and nanoconfinement