Molybdenum carbide (Mo2C) nanoparticles supported on two different carbon materials, carbon nanotubes and carbon xerogel, were prepared and characterised using X-ray diffraction, thermogravimetric analysis, scanning and transmission electron microscopy, nitrogen sorption and X-ray photoelectron spectroscopy. The analyses showed similar composition (ca. 27 wt% of Mo2C) and crystallite size (22-28 nm) for the two samples, but significantly different morphologies and specific surface areas. These were subsequently tested as electrocatalysts for hydrogen evolution reaction (HER) in acid media. Using linear scan voltammetry and electrochemical impedance measurements the main reaction parameters were determined, including Tafel slope, charge tran...
The generation of clean and sustainable hydrogen fuel through water splitting demands efficient and ...
Highly active and stable electrocatalysts for hydrogen evolution have been developed on the basis of...
Mo2C nanocrystals (NCs) anchored on vertically aligned graphene nanoribbons (VA-GNR) as hybrid nanoe...
The efficiency of hydrogen production from electrolysis of water is severely limited by the sluggish...
Mo2C is a unique material due to its tunable phase and electronic structures. Because of the interac...
The present work reports on the preparation of Mo2C nanoparticles decorated graphitic carbon sheets ...
Molybdenum carbide materials are considered to be promising hydrogen evolution reaction (HER) electr...
Demands for sustainable production of hydrogen are rapidly increasing because of environmental consi...
© 2017 Elsevier Ltd The efficiency of hydrogen production from electrolysis of water is severely lim...
The highly efficient electrochemical hydrogen evolution reaction (HER) provides a promising way to s...
Highly active and stable electrocatalysts for hydrogen evolution have been developed on the basis of...
Highly active and stable electrocatalysts for hydrogen evolution have been developed on the basis of...
Biomass is a potential precursor for preparing functional carbon materials, as the organic component...
Homogeneously dispersed Mo2C nanoparticles onto nitrogen-doped carbon nanotube - reduced graphene ox...
Monometallic Mo and W carbides as well as highly mixed (Mo,W) carbides with various Mo/W ratios were...
The generation of clean and sustainable hydrogen fuel through water splitting demands efficient and ...
Highly active and stable electrocatalysts for hydrogen evolution have been developed on the basis of...
Mo2C nanocrystals (NCs) anchored on vertically aligned graphene nanoribbons (VA-GNR) as hybrid nanoe...
The efficiency of hydrogen production from electrolysis of water is severely limited by the sluggish...
Mo2C is a unique material due to its tunable phase and electronic structures. Because of the interac...
The present work reports on the preparation of Mo2C nanoparticles decorated graphitic carbon sheets ...
Molybdenum carbide materials are considered to be promising hydrogen evolution reaction (HER) electr...
Demands for sustainable production of hydrogen are rapidly increasing because of environmental consi...
© 2017 Elsevier Ltd The efficiency of hydrogen production from electrolysis of water is severely lim...
The highly efficient electrochemical hydrogen evolution reaction (HER) provides a promising way to s...
Highly active and stable electrocatalysts for hydrogen evolution have been developed on the basis of...
Highly active and stable electrocatalysts for hydrogen evolution have been developed on the basis of...
Biomass is a potential precursor for preparing functional carbon materials, as the organic component...
Homogeneously dispersed Mo2C nanoparticles onto nitrogen-doped carbon nanotube - reduced graphene ox...
Monometallic Mo and W carbides as well as highly mixed (Mo,W) carbides with various Mo/W ratios were...
The generation of clean and sustainable hydrogen fuel through water splitting demands efficient and ...
Highly active and stable electrocatalysts for hydrogen evolution have been developed on the basis of...
Mo2C nanocrystals (NCs) anchored on vertically aligned graphene nanoribbons (VA-GNR) as hybrid nanoe...