92, Weijin Road
Nankai District
Tianjin, 300072
China
Tianjin University
Fe3+/Fe2+ redox cycle, amorphous boron, intimate contact, electron transfer, long-term stability.
Oxygen reduction reaction, Hierarchically porous carbon, Single-atom catalysts, Electrocatalysts, iron
Cobalt atom anchoring, Core-Shell structure, Covalent grafting, d-π conjugation effect, Multiscale Engineering
COFs, Chemical tailoring, Heteroatom doping, CQDs, on-off-on Fluorescence sensors
core-shell structure, three-electron oxygen reduction reaction, Hydroxyl radical, in-situ characterization, pollutants removal
Pyrite FeS2, carbon spheres, Fe(III)/Fe(II) cycle, fixed-bed reactor, long-term stability.
Pyrite FeS2, carbon spheres, Fe(III)/Fe(II) cycle, fixed-bed reactor, long-term stability
Single-atom cobalt, Crystallinity, Multidentate coordination, Electrochemical energy Storage, Hierarchical porous structure
MoS2, in-plane SVs, edge SVs, hydrodeoxygenation, palmitic acid
MOF derived catalysts, MnO@C nanorods, synergistic effect, reusability, DFT method.
Mixed metal oxides, Heterointerface, Four-electron oxygen reduction reaction, d-Band center theory, Zinc-air batteries
Two-electron oxygen reduction reaction, Carbon nanotubes wrapped Ni nanoparticles, Synergistic effect, Fenton reaction
Core-shell, vacancy engineering, sulfate radical (SO4*−) dominant, metal organic framework, Co3+/Co2+ redox.
N-doped carbon materials, photo-irradiation, electrons transport route, DET process, stability
Cobalt nanoparticles, N-doped carbon aerogels, Transfer hydrogenation, Nitrobenzene, Hydrazine hydrate.
Radial cobalt metal coordination, Axial covalent grafting, Partial crystallization characteristics, Low bandgap, Electrochemical energy storage
Transition metal doping, Iron oxides, Peroxymonosulfate, Electrochemical advanced oxidation processes (EAOPs), Minimal activation potential, Energy conservation.