Delaminated carbon nitride nanosheets were prepared by high-temperature H<sub>2</sub> treatment of bulk carbon nitride with defects being introduced during this treatment. Although the defects can act as traps for charge carriers, reducing photoluminescence lifetime, they also form highly active photocatalytic sites for hydrogen evolution. The nanostructured materials exhibit substantially enhanced photocatalytic activity due to a synergistic effect between delamination, the presence of defects, and associated band gap changes
Insufficient active sites and fast charge carrier recombination are detrimental to photocatalytic ac...
Vacancy engineering, that is, self-doping of vacancy in semiconductors, has become a commonly used s...
Porous structure, nitrogen defects and oxygen dopants are simultaneously introduced into the framewo...
Reinforcing the visible photon absorption and charge separation are the key issues to maximize the p...
Hydrogen evolution by photocatalytic technology has been one of the most promising and attractive so...
Graphitic carbon nitride nanosheets are extracted, produced via simple liquid-phase exfoliation of a...
Extending visible light absorption range and suppressing the recombination of photogenerated charge ...
[[abstract]]Two-dimensional graphitic carbon nitride (g-C3N4) nanosheets (CNNS) have attracted inten...
Defects play a significant part in promoting photocatalytic activity for H2 production. Various meth...
Incomplete polycondensation of the precursor, structural destruction and blue-shift of 2D nanosheets...
Polymeric carbon nitride (CN) with atomic thick layers has displayed ultrashort carrier transfer and...
Recently, metal-free graphitic carbon nitride (g-C3N4) has been recognized as a potential candidate ...
1D protonated graphitic carbon nitride (HCN) are prepared through free-template chemical method and ...
© 2018 Elsevier Ltd All rights reserved. Photocatalysis processes for producing alternative and sust...
A simple co-grinding treatment with fructose is introduced for the efficient and scalable preparatio...
Insufficient active sites and fast charge carrier recombination are detrimental to photocatalytic ac...
Vacancy engineering, that is, self-doping of vacancy in semiconductors, has become a commonly used s...
Porous structure, nitrogen defects and oxygen dopants are simultaneously introduced into the framewo...
Reinforcing the visible photon absorption and charge separation are the key issues to maximize the p...
Hydrogen evolution by photocatalytic technology has been one of the most promising and attractive so...
Graphitic carbon nitride nanosheets are extracted, produced via simple liquid-phase exfoliation of a...
Extending visible light absorption range and suppressing the recombination of photogenerated charge ...
[[abstract]]Two-dimensional graphitic carbon nitride (g-C3N4) nanosheets (CNNS) have attracted inten...
Defects play a significant part in promoting photocatalytic activity for H2 production. Various meth...
Incomplete polycondensation of the precursor, structural destruction and blue-shift of 2D nanosheets...
Polymeric carbon nitride (CN) with atomic thick layers has displayed ultrashort carrier transfer and...
Recently, metal-free graphitic carbon nitride (g-C3N4) has been recognized as a potential candidate ...
1D protonated graphitic carbon nitride (HCN) are prepared through free-template chemical method and ...
© 2018 Elsevier Ltd All rights reserved. Photocatalysis processes for producing alternative and sust...
A simple co-grinding treatment with fructose is introduced for the efficient and scalable preparatio...
Insufficient active sites and fast charge carrier recombination are detrimental to photocatalytic ac...
Vacancy engineering, that is, self-doping of vacancy in semiconductors, has become a commonly used s...
Porous structure, nitrogen defects and oxygen dopants are simultaneously introduced into the framewo...