China
Sichuan University of Science and Engineering
porous N-doped carbon, bimetallic single-atom catalyst, synergistic effect
oxygen reduction reaction, P, N-codoped carbon, Electron-rich FeN4, electronic structure regulation
Oxygen reduction reaction, P, N-codoped carbon, Electron-rich FeN4, Electronic structure regulation
Nickel-rich layered cathode, Selective lattice doping, Synergistic effect, Tuned phase transition, Lithium-ion battery
Single Mn-N4 sites, Core-shell nanostructures, Electrocatalysis, Oxygen reduction reaction
Single Mn-N4 sites, Core-shell nanostructures, electrocatalysis, oxygen reduction reaction
oxygen reduction reaction, electrocatalyst, N-doped carbon, sheets/nanotubes intertwined morphology, dual mesoporous hierarchical architecture
nitrogen-doped mesoporous carbon networks, dispersed nickel hydroxide, bifunctional catalysis, oxygen reduction reaction, oxygen evolution reaction
oxygen reduction reaction, carbon catalyst, cerium regulation, guided formation of active sites, scavenging active oxygen species
Doped-carbon structures, Soft-hard template, Mass transfer, Defective sites, Oxygen reduction
Nitrogen-doped carbon, Carbon quantum dots, electrocatalysis, Oxygen reduction
Glocuse-derived, Carbon sheets, Defect-enriched structure, Oxygen reduction reaction, Zn-air battery
FeN2O2 single−site, doped−carbon, endogenous CeO2, oxygen reduction
oxygen reduction reaction, oxygen evolution reaction, bifunctional catalyst, cyclodextrin, nickel hydroxide
oxygen reduction reaction;microporores;larger specific surface area
Acetonitrile, Chemical vapor deposition, Nitrogen doped carbon, Tailored configuration
dual-ligand stepwise preordination strategy, hierarchical micropore-mesopore structure, Ce3+/Ce4+ redox couple, Fe-Nx sites, zinc-air battery, oxygen reduction reaction