Graphene based materials can be effectively modified by doping in order to specifically tailor their properties toward specific applications. So far the most used and widely investigated dopant heteroatom is probably nitrogen. However, boron is also an equally important element that can induce novel and complementary properties leading to specific implementation in alternative devices and technologies. In this paper, we survey the most recent preparation methods of boron doped graphene, including materials with specific morphology such as nanoribbons, quantum dots and 3D interconnected systems. We illustrate the results of theoretical and experimental studies dealing with the description and understanding of the main structural, electronic ...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
Chemical doping is one of the most effective methods to tune the electrochemical properties of graph...
Structurally precision graphene nanoribbons (GNRs) have attracted great interest considering their p...
Chemical doping of graphene becomes necessary to create a band gap which is useful for various appli...
Heteroatom-doping into graphitic networks has been utilized for opening the band gap of graphene. Ho...
Structurally precision graphene nanoribbons (GNRs) have attracted great interest considering their p...
The most promising method to improve the electronic properties of graphene is chemical doping with h...
Boron is a unique element in terms of electron deficiency and Lewis acidity. Incorporation of boron ...
Disclosed are boron/nitrogen co-doped graphene for semiconductor applications and a method for produ...
Boron is a unique element in terms of electron deficiency and Lewis acidity. Incorporation of boron ...
Disclosed are boron/nitrogen co-doped graphene for semiconductor applications and a method for produ...
Multi-walled, single-walled and double-walled carbon nanotubes as well as graphene can be doped with...
<div>MOLECULAR TRAJECTORIES </div><div>for</div><div>Boron Doping of Graphene – Pushing the Limit</d...
Boron is a unique element in terms of electron deficiency and Lewis acidity. Incorporation of boron ...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
Chemical doping is one of the most effective methods to tune the electrochemical properties of graph...
Structurally precision graphene nanoribbons (GNRs) have attracted great interest considering their p...
Chemical doping of graphene becomes necessary to create a band gap which is useful for various appli...
Heteroatom-doping into graphitic networks has been utilized for opening the band gap of graphene. Ho...
Structurally precision graphene nanoribbons (GNRs) have attracted great interest considering their p...
The most promising method to improve the electronic properties of graphene is chemical doping with h...
Boron is a unique element in terms of electron deficiency and Lewis acidity. Incorporation of boron ...
Disclosed are boron/nitrogen co-doped graphene for semiconductor applications and a method for produ...
Boron is a unique element in terms of electron deficiency and Lewis acidity. Incorporation of boron ...
Disclosed are boron/nitrogen co-doped graphene for semiconductor applications and a method for produ...
Multi-walled, single-walled and double-walled carbon nanotubes as well as graphene can be doped with...
<div>MOLECULAR TRAJECTORIES </div><div>for</div><div>Boron Doping of Graphene – Pushing the Limit</d...
Boron is a unique element in terms of electron deficiency and Lewis acidity. Incorporation of boron ...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
Chemical doping is one of the most effective methods to tune the electrochemical properties of graph...