A suitable photocatalyst for overall water splitting has been produced by overcoming the disadvantage of the band structure in bulk BiOCl by reducing the thickness to the quantum scale. The ultrathin BiOCl nanosheets with surface/subsurface defects realized the solar‐driven pure water splitting in the absence of any co‐catalysts or sacrificial agent. These surface defects cannot only shift both the valence band and conduction band upwards for band‐gap narrowing but also promote charge‐carrier separation. The amount of defects in the outer layer surface of BiOCl results in an enhancement of carrier density and faster charge transport. First‐principles calculations provide clear evidence that the formation of surface oxygen vacancies is easie...
Oxygen vacancies (OVs) have been reported to significantly alter the photocatalytic properties of Bi...
Owing to its unique layered structure, BiOCl demonstrates high photocatalytic activity. However, its...
Vacancy control can significantly enhance the performance of photocatalytic semiconductors for water...
The separation of electron–hole pairs has a significant influence on the photocatalytic process on s...
The separation of electron–hole pairs has a significant influence on the photocatalytic process on s...
Crystal facet engineering and nonmetal doping are regarded as effective strategies for improving the...
A central issue in understanding photocatalytic water splitting on a stoichiometric or defective nan...
Single-crystal BiOCl nanosheets, with high {001} facets exposed, were synthesized through a facile h...
BiOCl nanosheets (BiOCl NSs) were synthesized by hydrolyzing a hierarchical flowerlike molecular pre...
Defective BiOBr nanosheets with ultrathin thickness and surface-confined pits have been synthesized ...
Introducing defects into semiconductor photocatalysts has been identified as an effective approach t...
Oxygen vacancies (OVs) have been reported to significantly alter the photocatalytic properties of Bi...
It remains a great challenge to understand the role of oxygen vacancies in determining the photooxid...
Resizing and engineering defects of two-dimensional (2D) layered semiconductors is of considerable i...
Oxygen vacancies (OVs) have been reported to significantly alter the photocatalytic properties of Bi...
Oxygen vacancies (OVs) have been reported to significantly alter the photocatalytic properties of Bi...
Owing to its unique layered structure, BiOCl demonstrates high photocatalytic activity. However, its...
Vacancy control can significantly enhance the performance of photocatalytic semiconductors for water...
The separation of electron–hole pairs has a significant influence on the photocatalytic process on s...
The separation of electron–hole pairs has a significant influence on the photocatalytic process on s...
Crystal facet engineering and nonmetal doping are regarded as effective strategies for improving the...
A central issue in understanding photocatalytic water splitting on a stoichiometric or defective nan...
Single-crystal BiOCl nanosheets, with high {001} facets exposed, were synthesized through a facile h...
BiOCl nanosheets (BiOCl NSs) were synthesized by hydrolyzing a hierarchical flowerlike molecular pre...
Defective BiOBr nanosheets with ultrathin thickness and surface-confined pits have been synthesized ...
Introducing defects into semiconductor photocatalysts has been identified as an effective approach t...
Oxygen vacancies (OVs) have been reported to significantly alter the photocatalytic properties of Bi...
It remains a great challenge to understand the role of oxygen vacancies in determining the photooxid...
Resizing and engineering defects of two-dimensional (2D) layered semiconductors is of considerable i...
Oxygen vacancies (OVs) have been reported to significantly alter the photocatalytic properties of Bi...
Oxygen vacancies (OVs) have been reported to significantly alter the photocatalytic properties of Bi...
Owing to its unique layered structure, BiOCl demonstrates high photocatalytic activity. However, its...
Vacancy control can significantly enhance the performance of photocatalytic semiconductors for water...