253 Yonghyun-dong
Nam-gu Incheon 402-751
Korea, Republic of (South Korea)
Inha University
SSRN RANKINGS
in Total Papers Citations
electrocatalyst, oxygen evolution reaction, cobalt sulfide, heteroatom doping, DFT calculation
electrocatalyst, Oxygen evolution reaction, Cobalt sulfide, Heteroatom doping, DFT calculation
electrocatalyst, Oxygen evolution reaction, cobalt sulfide, heteroatom doping, DFT calculation
electrocatalyst, Oxygen evolution reaction, Transition metal phosphide, heteroatom doping, Phosphorus vacancy
Electrocatalyst, hollow structure, Mott-Schottky junction, heteroatom doping, Zn-air battery
electrocatalyst, hollow structure, Mott-Schottky junction, heteroatom doping, Zn-air battery
Lithium ion battery, Anode materials, Silica, Yolk-shell structure, heteroatom doping
lithium ion battery, Anode Materials, silica, Yolk-shell structure, heteroatom doping
Anion exchange membrane water electrolysis, Electrocatalyst, Oxygen evolution reaction, Structural engineering, Heterostructure
Electrocatalyst, Mott-Schottky contact, Oxygen vacancy, Zn-air battery, transition metal
mesostructured PDA, Mott-Schottky junction, heteroatom dual doping, Zn-air battery, AEMFC
Bifunctional electrocatalyst, FeCo alloy, N-doped carbon, defective carbon support, zinc-air battery
Electrocatalyst, Hydrogen evolution reaction, Oxygen evolution reaction, Transition metal phosphide, Core shell structure
electrocatalyst, Oxygen evolution reaction, Urea oxidation reaction, nickel phosphide, heteroatom doping
water electrolysis, Transition metal sulfide, MXene, heterostructure, porosity-engineering
electrocatalyst, Hollow structure, Heterojunction, Heteroatom doping, Zn-air battery
Zn-air battery, Bifunctional electrocatalyst, Bimetallic sulfide, Sulfur vacancy, Heteroatom doping
electrocatalyst, oxygen evolution reaction, oxygen reduction reaction, Zn-air battery, transition metal sulfide, defect engineering
Electrocatalyst, oxygen evolution reaction, oxygen reduction reaction, Zn-air battery, transition metal sulfide, defect engineering
Electrocatalyst, Oxygen reduction reaction, Hollow structure, Heteroatom doping, Fuel cell
Oxygen evolution reaction, Bimetallic MOF, Transition metal nitride, heterointerface, Cerium oxide, oxygen vacancy
Electrocatalyst, heterostructure, sulfur vacancies, Heteroatom doping, Bimetallic sulfide, Zn-air battery