Chunchon
Korea, Republic of (South Korea)
Kangwon National University
Garnet-type Li7La3Zr2O12, Nanostructure Ga-LLZO, Li-ion solid electrolyte, Solid-state battery, Microwave-assisted solvothermal method
Lithium ion batteries, LiFePO₄, Carbon nanotubes, Rotary chemical vapor deposition
all-solid-state battery, composite polymer electrolyte, Mechanical properties, Ionic conductivity, nanofiller
3D ordered macroporous composites, MOF-derived Co/N-carbon frameworks, hierarchical macro/microporosity, polysulfide confinement, catalysis, fast charge-mass transport, lithium-sulfur batteries
3D ordered macroporous composites, MOF-derived Co/N-carbon frameworks, hierarchical macro/microporosity, polysulfide confinement, fast charge–mass transport, lithium–sulfur batteries
3D ordered macroporous composites, MOF-derived Co/N-carbon frameworks, hierarchical macro/microporosity, polysulfide confinement, fast charge–mass transport, Lithium–sulfur batteries
metal organic framework, ZIF-8, MOF-derived porous carbon, carbonization, graphene wrapping
Li metal battery, Host, Graphene assembly, Nano perforations, Tortuosity
Lithium-ion batteries, LiFePO4, Carbon Nanotubes, Rotary chemical vapor deposition
Lithium-sulfur battery, zeolite imidazole framework, reduced graphene oxide, Metal organic framework, polysulfides interaction
tin oxide nanoparticle, Reduced graphene oxide, Lithium-sulfur battery, Electrochemical performance, chemical function, polysulfide adsorption
sodium-ion batteries, Anode material, Black phosphorus, reduced graphene oxides, Chemical bonding
next-generation high-energy-density batteries, nanoperforated graphene microspheres, ZnO nanoparticles, Dendrite-free Li metal anodes
Mangrove Charcoal, Hard carbon, Carbonization Temperature, Sodium-Ion Battery Anodes
Metal-organic frameworks (MOFs), Three-dimensionally ordered materials (3DOM), All-solid-state lithium batteries (ASSLBs), Solid polymer electrolytes (SPEs), Polyethylene oxide (PEO)
interface, Cathode, solid electrolyte, Batteries, ionic
All-solid-state battery, Composite polymer electrolyte, Mechanical properties, Ionic conductivity, Nanofiller