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Reducing the high hydrogen binding strength of vanadium carbide MXene with atomic Pt confinement for high activity toward HER

Seung‐Young Park, Yea‐Lee Lee, Yeoheung Yoon, Se Yeon Park, Soonmin Yim‬, Wooseok Song, Sung Myung, Kug‐Seung Lee, Hyunju Chang, Sun Sook Lee, Ki‐Seok An

2021Applied Catalysis B: Environmental111 citationsDOI

Topics & Concepts

OverpotentialCatalysisVanadiumElectronic structureVanadium carbideBinding energyElectrocatalystVacancy defectFermi levelMaterials scienceHydrogenDensity functional theoryChemistryChemical physicsPhysical chemistryInorganic chemistryComputational chemistryCrystallographyAtomic physicsElectrochemistryPhysicsElectrodeBiochemistryOrganic chemistryQuantum mechanicsElectronMXene and MAX Phase MaterialsAdvanced Memory and Neural Computing2D Materials and Applications
Reducing the high hydrogen binding strength of vanadium carbide MXene with atomic Pt confinement for high activity toward HER | Litcius