Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Chemical engineering, Doping, Anode, Sodium, and Cathode.
Modulating the structure of O3-type NaNi1/3Fe1/3Mn1/3O2 for high-performance sodium-ion batteries via Na2MoO4 reactive wetting coating combined with Mo doping and interface reconstruction
Suppressing the P2–O2 phase transition of P2-type Ni/Mn-based layered oxide by synergistic effect of Zn/Ti co-doping for advanced sodium-ion batteries
Designing ultrastable P2/O3-type layered oxides for sodium ion batteries by regulating Na distribution and oxygen redox chemistry
Suppressing vacancies and crystal water of sodium manganese iron-based Prussian blue analogue by potassium doping for advanced sodium-ion batteries
Gradient doping–induced triphasic intergrowth hexacyanoferrate cathode for high-performance sodium-ion batteries
Sodium Formate as a Highly Efficient Sodium Compensation Additive for Sodium-Ion Batteries with a P2-Type Layered Oxide Cathode
Suppressing the P2–OP4 phase transition of single-crystal P2-type Ni/Zn/Mn-based layered oxide for advanced sodium-ion batteries
Rhombic dodecahedron nanoframes of PtIrCu with high-index faceted hyperbranched nanodendrites for efficient electrochemical ammonia oxidation via preferred NHx dimerization pathways
Boosting the operation stability of sodium-rich vanadium manganese-based NASICON phosphate as a cathode material for Na-ion batteries by Zn pinning effect
Coiled Polymer Artificial Muscles Having Dual-Mode Actuation with Large Stress Generation
Nonlinear Viscoelasticity and Toughening Mechanisms in Nanoclay-PNIPAAm Double Network Hydrogels
Study on the actuation mechanism of liquid metal thermosensitive hydrogel soft robot
Locomotion of an untethered, worm-inspired soft robot driven by a shape-memory alloy skeleton
Thermosensitive P(AAc‐co‐NIPAm) Hydrogels Display Enhanced Toughness and Self‐Healing via Ion–Ligand Interactions
Soft gallstone-crushing robots
Itol A May Affect the Growth and Development of <i>Spodoptera frugiperda</i> through Hijacking JHBP and Impeding JH Transport
Hyperbranched concave octahedron of PtIrCu nanocrystals with high-index facets for efficiently electrochemical ammonia oxidation reaction
Stabilizing P2-Type Ni–Mn Oxides as High-Voltage Cathodes by a Doping-Integrated Coating Strategy Based on Zinc for Sodium-Ion Batteries
Moisture induced electricity for self-powered microrobots
Precursor modulated active sites of nitrogen doped graphene-based carbon catalysts via one-step pyrolysis method for the enhanced oxygen reduction reaction
Highly stable Na metal anode enabled by a multifunctional hard carbon skeleton
Electromagnetic–Triboelectric Hybridized Nanogenerators
Box-like FeS@nitrogen-sulfur dual-doped carbon as high-performance anode materials for lithium ion and sodium ion batteries
A facile strategy synthesized PtRhNi truncated triangle nanoflakes with PtRh-rich surface as highly active and stable bifunctional catalysts for direct methanol fuel cells
Effects of itol <scp>A</scp> on the larval growth and development of <i>Spodoptera frugiperda</i> (<scp>Lepidoptera: Noctuidae</scp>)
Hierarchically patterned self-powered sensors for multifunctional tactile sensing
Natural mushroom spores derived hard carbon plates for robust and low-potential sodium ion storage
Enhanced Power Generation from the Interaction between Sweat and Electrodes for Human Health Monitoring