Metal-based catalysts have been widely used for the aqueous-phase oxidation of organic pollutants for water purification. Metal-free catalysis in the oxidative degradation of pollutants is now reported by H. Sun, S. Wang, and co-workers on page 3036. Using density functional theory and rational design, sulfur and nitrogen co-doping into 2D carbon frameworks presents excellent catalytic efficiency due to synergistic effects
Don't be a dope: be a double dope! Graphene was doped with both boron and nitrogen at well-defined d...
Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as...
Conspectus Catalytic processes have remarkably boosted the rapid industrializations in chemical prod...
Published online: March 18, 2015Sulfur and nitrogen co-doped reduced graphene oxide (rGO) is synthes...
Available online 31 October 2014Abstract Graphene-based materials have been demonstrated as excellen...
Heteroatom-doped carbonaceous materials are the most promising substitutes of noble metals as green ...
Available online 17 February 2016Recently, graphene and its derivatives as novel metal-free material...
This chapter focuses on the use of doped carbon nanomaterials in catalysis. The availability of carb...
The synthesis of carbonaceous materials from a metal organic framework (MIL-100), organic linker and...
Published: February 13, 2017N-doped graphene has been considered as a promising catalyst with surfac...
Metal-free carbons have recently shown great efficiency in several catalytic processes, including ox...
Tailoring the electronic arrangement of graphene by doping is a practical strategy for producing sig...
Carbon nanomaterials are potential materials with their intrinsic structure and property in energy c...
Published: January 29, 2015N-Doped graphene (NG) nanomaterials were synthesized by directly annealin...
Conspectus Catalytic processes have remarkably boosted the rapid industrializations in chemical prod...
Don't be a dope: be a double dope! Graphene was doped with both boron and nitrogen at well-defined d...
Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as...
Conspectus Catalytic processes have remarkably boosted the rapid industrializations in chemical prod...
Published online: March 18, 2015Sulfur and nitrogen co-doped reduced graphene oxide (rGO) is synthes...
Available online 31 October 2014Abstract Graphene-based materials have been demonstrated as excellen...
Heteroatom-doped carbonaceous materials are the most promising substitutes of noble metals as green ...
Available online 17 February 2016Recently, graphene and its derivatives as novel metal-free material...
This chapter focuses on the use of doped carbon nanomaterials in catalysis. The availability of carb...
The synthesis of carbonaceous materials from a metal organic framework (MIL-100), organic linker and...
Published: February 13, 2017N-doped graphene has been considered as a promising catalyst with surfac...
Metal-free carbons have recently shown great efficiency in several catalytic processes, including ox...
Tailoring the electronic arrangement of graphene by doping is a practical strategy for producing sig...
Carbon nanomaterials are potential materials with their intrinsic structure and property in energy c...
Published: January 29, 2015N-Doped graphene (NG) nanomaterials were synthesized by directly annealin...
Conspectus Catalytic processes have remarkably boosted the rapid industrializations in chemical prod...
Don't be a dope: be a double dope! Graphene was doped with both boron and nitrogen at well-defined d...
Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as...
Conspectus Catalytic processes have remarkably boosted the rapid industrializations in chemical prod...