Don't be a dope: be a double dope! Graphene was doped with both boron and nitrogen at well-defined doping sites to induce a synergistic effect that boosts its catalytic activity for oxygen reduction (see structure). The excellent catalytic performance of the new metal-free catalyst is comparable to that of commercial Pt/C
Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as...
Solving slow kinetics of oxygen reduction reaction is critically important for the development of hy...
Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as...
Don't be a dope: be a double dope! Graphene was doped with both boron and nitrogen at well-defined d...
Don't be a dope: be a double dope! Graphene was doped with both boron and nitrogen at well-defined d...
Based on first principles method, the catalytic property of nitrogen-doped graphene is investigated ...
Recently, enormous research efforts have been focused on the development of non-precious-metal catal...
Heteroatom-doping into graphitic networks has been utilized for opening the band gap of graphene. Ho...
A facile approach has been developed to prepare B,N co-doped graphene with tuneable composition simp...
A facile approach has been developed to prepare B,N co-doped graphene with tuneable composition simp...
Solving slow kinetics of the oxygen reduction reaction is critically important for the development o...
Chemically modified graphenes (CMGs) show great promise for various applications owing to the feasib...
Theoretical studies predicted that doping graphene with nitrogen can tailor its electronic propertie...
Owing to its superior properties and versatility, graphene has been proliferating the energy researc...
Available online 31 October 2014Abstract Graphene-based materials have been demonstrated as excellen...
Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as...
Solving slow kinetics of oxygen reduction reaction is critically important for the development of hy...
Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as...
Don't be a dope: be a double dope! Graphene was doped with both boron and nitrogen at well-defined d...
Don't be a dope: be a double dope! Graphene was doped with both boron and nitrogen at well-defined d...
Based on first principles method, the catalytic property of nitrogen-doped graphene is investigated ...
Recently, enormous research efforts have been focused on the development of non-precious-metal catal...
Heteroatom-doping into graphitic networks has been utilized for opening the band gap of graphene. Ho...
A facile approach has been developed to prepare B,N co-doped graphene with tuneable composition simp...
A facile approach has been developed to prepare B,N co-doped graphene with tuneable composition simp...
Solving slow kinetics of the oxygen reduction reaction is critically important for the development o...
Chemically modified graphenes (CMGs) show great promise for various applications owing to the feasib...
Theoretical studies predicted that doping graphene with nitrogen can tailor its electronic propertie...
Owing to its superior properties and versatility, graphene has been proliferating the energy researc...
Available online 31 October 2014Abstract Graphene-based materials have been demonstrated as excellen...
Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as...
Solving slow kinetics of oxygen reduction reaction is critically important for the development of hy...
Nitrogen (5.61 at%) doped reduced graphene oxide synthesized via a facile method was demonstrated as...