Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires highly active and stable earth-abundant co-catalysts to replace expensive and rare platinum. Here we employ density functional theory calculations to direct atomic-level exploration, design and fabrication of a MXene material, Ti3C2 nanoparticles, as a highly efficient co-catalyst. Ti3C2 nanoparticles are rationally integrated with cadmium sulfide via a hydrothermal strategy to induce a super high visible-light photocatalytic hydrogen production activity of 14,342 μmol h-1 g-1 and an apparent quantum efficiency of 40.1% at 420 nm. This high performance arises from the favourable Fermi level position, electrical conductivity and hydrogen evolut...
A wide solar light absorption window and its utilization, long-term stability, and improved interfac...
Fabricating two-dimensional (2D) titanium carbide (Ti3C2) MXene nanosheets with unique morphology co...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Ti3C2Tx is a 2-dimensional titanium carbide material featuring outstanding electrochemical propertie...
The production of chemical fuels by solar energy conversion is regarded as one of the major strategi...
Global energy and environmental crisis have received enormous research attention for a long time. Fo...
At present, the composition and crystalline structure of transition metal nitrides or carbides (MXen...
Photocatalytic hydrogen generation through the utilization of the Ti3C2 MXene photocatalyst offers t...
The rapid consumption of non-renewable fossil fuels and the relevant critical environmental issues h...
Solar-to-hydrogen conversion based on photocatalytic water splitting is a promising pathway for sust...
A wide solar light absorption window and its utilization, long-term stability, and improved interfac...
Fabricating two-dimensional (2D) titanium carbide (Ti3C2) MXene nanosheets with unique morphology co...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Scalable and sustainable solar hydrogen production through photocatalytic water splitting requires h...
Ti3C2Tx is a 2-dimensional titanium carbide material featuring outstanding electrochemical propertie...
The production of chemical fuels by solar energy conversion is regarded as one of the major strategi...
Global energy and environmental crisis have received enormous research attention for a long time. Fo...
At present, the composition and crystalline structure of transition metal nitrides or carbides (MXen...
Photocatalytic hydrogen generation through the utilization of the Ti3C2 MXene photocatalyst offers t...
The rapid consumption of non-renewable fossil fuels and the relevant critical environmental issues h...
Solar-to-hydrogen conversion based on photocatalytic water splitting is a promising pathway for sust...
A wide solar light absorption window and its utilization, long-term stability, and improved interfac...
Fabricating two-dimensional (2D) titanium carbide (Ti3C2) MXene nanosheets with unique morphology co...
Developing highly conductive, stable, and active nonprecious hydrogen evolution reaction (HER) catal...