Photocatalytic production of hydrogen from water can directly convert solar energy into chemical energy storage, which has significant advantages and great promise. As an emerging photosensitizer, the efficiency of quantum dots (QDs) based artificial photosynthetic system have made breakthroughs. In this review, we will give a summary of the development of QDs based photocatalytic hydrogen evolution in these years. First, we highlight different types of hydrogen evolution catalyst combined with QDs; then we focus on the surface modification and heterostructure formation of QDs to improve the photocatalytic efficiency, respectively. In the end, we will propose some Cd‐free QDs and future development of photocatalytic hydrogen evolution
Hydrogen is a promising energy carrier to replace traditional fossil fuel and could be obtained by t...
Hydrogen produced from water and solar energy holds much promise for decreasing the fossil fuel d...
Hydrogen generation by using quantum dot (QD) based heterostructures has emerged as a promising stra...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
Energy harvesting, which converts wasted environmental energy into electricity by utilizing various ...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
Hydrogen production via light-driven water splitting is a key process in the context of solar energy...
ABSTRACT: Solution-processed mesoscopic oxide semiconductor-based materials offer potentially low-co...
The catalytic nature of semiconducting quantum dots (QDs) for photocatalytic hydrogen (H2) evolution...
Solar energy can be converted into chemical energy by photocatalytic water splitting to produce mole...
Photocatalytic hydrogen (H2) production is a process that converts solar energy into chemical energy...
Solution-processed mesoscopic oxide semiconductor-based materials offer potentially low-cost and hig...
Solar energy offers a huge potential for global supply of clean and sustainable energy, reducing our...
The necessity for developing clean energy technology has led to the surge in renewable energy resear...
We report on the fabrication of CdSe quantum dot (QD) sensitized electrodes by direct adsorption of ...
Hydrogen is a promising energy carrier to replace traditional fossil fuel and could be obtained by t...
Hydrogen produced from water and solar energy holds much promise for decreasing the fossil fuel d...
Hydrogen generation by using quantum dot (QD) based heterostructures has emerged as a promising stra...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
Energy harvesting, which converts wasted environmental energy into electricity by utilizing various ...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
Hydrogen production via light-driven water splitting is a key process in the context of solar energy...
ABSTRACT: Solution-processed mesoscopic oxide semiconductor-based materials offer potentially low-co...
The catalytic nature of semiconducting quantum dots (QDs) for photocatalytic hydrogen (H2) evolution...
Solar energy can be converted into chemical energy by photocatalytic water splitting to produce mole...
Photocatalytic hydrogen (H2) production is a process that converts solar energy into chemical energy...
Solution-processed mesoscopic oxide semiconductor-based materials offer potentially low-cost and hig...
Solar energy offers a huge potential for global supply of clean and sustainable energy, reducing our...
The necessity for developing clean energy technology has led to the surge in renewable energy resear...
We report on the fabrication of CdSe quantum dot (QD) sensitized electrodes by direct adsorption of ...
Hydrogen is a promising energy carrier to replace traditional fossil fuel and could be obtained by t...
Hydrogen produced from water and solar energy holds much promise for decreasing the fossil fuel d...
Hydrogen generation by using quantum dot (QD) based heterostructures has emerged as a promising stra...