92 West Dazhi Street
Nan Gang District
Harbin, 150001
China
Harbin Institute of Technology
Solid oxide fuel cells, oxygen reduction reaction, Calcium-doping, Electrochemical performance
Solid oxide fuel cells, Oxygen reduction reaction, Calcium-doping, Electrochemical performance
Lithium-air batteries, Electrostatic spinning, Oxygen selective membranes, Air environment, In situ EIS measurements
Magnetic topological insulator, Zn-doped MnBi2Te4, Single crystals; Antiferromagnetic ordering, Magnetic interaction;
lithium‒air battery, 3D graphene foam, Multi-scale pore structure, flexible device, Synergistic effect
Oxygen/air batteries, Adsorption and desorption mechanism, Oxygen storage layer, Full-sealed lithium-oxygen battery, Mesoporous carbon.
Aqueous zinc-ion batteries, cathode material, perovskite-type, diffusion, sol-gel preparation, SrVO3
Water splitting, hydrogen evolution reaction, Mott-Schottky effect, heterojunction interface, hydrogen spillover
Electrochemical water splitting, Dynamic reconstruction, In-situ spectroscopy, Oxygen evolution reaction, Superwetting surfaces
Solid oxide fuel cell, Cation segregation, Medium entropy cathode, CO2 tolerance
Solid oxide fuel cells, Medium-entropy, Double perovskite cathodes, CO2 tolerance, Surface segregation
solid oxide fuel cells (SOFCs). double perovskite anode. copper-iron bimetallic. exsolution rule. Whisker-like nanostructure.
All-solid-state lithium-oxygen battery, Structural design, Cost-effective catalysts, Ultra-low charging overpotential, Rate-limiting steps
lithium-oxygen batteries, Graphene quantum dots, NiCo2O4 nanosheets, 3D graphene foam, conductivity compensation
Sulfur poisoning, perovskite oxide, Nickel, cerium oxide, density functional theory, Regeneration
Reduction approach, Porous Ni metals, Hydrogen evolution reaction, Oxygen evolution reaction, Water splitting
Aqueous zinc-ion batteries, Na3V2(PO4)3, sol-gel preparation, cathode material.
solid oxide fuel cells, Cathodes, Oxygen reduction reaction, High-entropy perovskite oxides, Chromium-resistance
Solid Oxides Fuel Cells, Co-doping, Composite Electrolyte, Conductivity
Aqueous zinc-ion batteries, Na3V1.5Cr0.5(PO4)3/rGO, low-temperature, cathode material
hierarchical porous architecture, gaseous oxidation-reduction, transition metals, accelerated reconstruction, oxygen evolution reaction
oxygen evolution reactions, rich vacancies, nickel-iron layered double hydroxides, hydrolysis of sodium borohydride, nanoporous metals
hexagonal MoN, N2 plasma, thin film, electrode, Lithium-ion batteries
hexagonal MoN, N2 plasma, Thin film, electrode, lithium-ion batteries