No. 3 Xueyuan Road, Taiyuan, China
taiyuan, 030051
China
North University of China
Oxygen evolution reaction, Trimetallic, Transition metal selenides, Electrodeposition
Hydrogen energy, Electrocatalysis, Crystalline/amorphous, Cathodic electrodeposition, Oxygen evolution reaction
water splitting, oxygen evolution reaction, electrocatalyst, NiFe2O4, iron foam
Hydrogen energy, Bifunctional catalysts, Bimetallic sulfides, Ultra-low load precious metals
Cobalt molybdate (CoMoO4), Iron hydroxide oxide (FeOOH), Electrocatalysis, Composite materials, Oxygen evolution reaction
electrocatalyst, hydrothermal, transition metal sulfide, oxygen evolution reaction
Electrolytic water, Nanoflower-like, Transition metal sulfide, Oxygen evolution reaction
oxygen evolution reaction (OER), NiMoO4, ZIF-67, transition metal sulfide
Oxygen evolution reaction, amperometric current densities, cation vacancies, surface reconstruction
Hydrogen energy, Bifunctional catalyst, Heterostructure, Ternary sulfide, Surface deposition
Single-atom, Lattice confinement, electrocatalysts, Oxygen evolution reaction
Fe-doping, S-vacancies, alkaline water/seawater electrolysis, oxygen evolution reaction
Oxygen evolution reaction (OER), MOFs, FeOOH, Heterostructure
Oxygen evolution reaction (OER), MOFs, FeOOH, heterostructure