Micro-nanoporous MoO2@CoMo heterostructure catalyst for hydrogen evolution reaction

  • Han, Gyeong Ho
  • Kim, Hyunki
  • Kim, Jooyoung
  • Kim, Junhyeong
  • Kim, Soo Young
  • 외 1명
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초록

The synergetic effect at the interfaces between metal oxide and metal in heterostructures plays an essential role in electrocatalytic hydrogen production via water electrolysis. Here, a micro-nanoporous MoO2@CoMo heterostructure with high catalytic performance was simply fabricated electrochemically at room temperature and under ambient pressure. Controllable microporous CoMo networks were formed on the gas diffusion layer using hydrogen bubble-assisted electrodeposition. The following electrochemical etching at an appropriate potential produced a nanoporous surface via selective Co dissolution, accompanied by the formation of Mo oxide. Due to the significantly roughened morphology and the interfacial effect, the optimized MoO2@CoMo heterostructure catalyst exhibited a low overpotential of 76 mV for hydrogen evolution at -50 mA/cm(2). Further analysis verified the crucial role of the Mo4+ ratio in the intrinsic activity. The insoluble Mo species passivated the MoO2 surface layer and sustained the Mo4+ ratio, leading to excellent stability of the MoO2@CoMo heterostructure catalyst in long-term operation.

키워드

Heterostructure catalystWater electrolysisHydrogen evolution reactionElectrodepositionElectrochemical etchingPHOSPHIDESNIELECTRODESHIGH-PERFORMANCE ELECTROCATALYSTHIGHLY EFFICIENTFACILE SYNTHESISMOS2 NANOSHEETSLARGE-SCALEMOLYBDENUMMOO2
제목
Micro-nanoporous MoO2@CoMo heterostructure catalyst for hydrogen evolution reaction
저자
Han, Gyeong HoKim, HyunkiKim, JooyoungKim, JunhyeongKim, Soo YoungAhn, Sang Hyun
DOI
10.1016/j.apcatb.2020.118895
발행일
2020-08-05
유형
Article
저널명
Applied Catalysis B: Environment and Energy
270