In this paper, we provide evidence that low density nano-porous amorphous carbon (a-C) consists of interconnected regions of amorphous graphene (a-G). We include experimental information in producing models, while retaining the power and accuracy of ab initio methods with no biasing assumptions. Our models are highly disordered with predominant sp2 bonding and ring connectivity mainly of sizes 5–8. The structural, dynamical and electronic signatures of our 3-D amorphous graphene are similar to those of monolayer amorphous graphene. We predict an extended x-ray absorption fine structure (EXAFS) signature of amorphous graphene. Electronic density of states calculations for 3-D amorphous graphene reveal similarity to monolayer amorphous graphe...
This work discusses the electron transport mechanisms that we obtained as a function of the density ...
This work discusses the electron transport mechanisms that we obtained as a function of the density ...
Graphene is an important material for sensing and energy storage applications. Since the vast majori...
In this paper, we provide evidence that low density nano-porous amorphous carbon (a-C) consists of i...
A disorder-order transition from amorphous carbon (aC) to layered amorphous graphene (LAG) has been ...
Carbon has shown itself to be the most flexible of atoms, crystallizing in divergent phases such as ...
© 2022 Author(s).Amorphous materials have been used in a range of electronic and photonic applicatio...
Tight-binding molecular dynamics simulations reveal interesting physical trends in amorphous carbon ...
Disordered carbons comprise graphene fragments assembled into three-dimensional networks. It has lon...
Uwe Stephan Dissertation This work is concerned with methods and results for the calculation of el...
Amorphous graphene is a realization of a two-dimensional Zachariasen glass as first proposed 80 year...
Amorphous graphene is a realization of a two-dimensional Zachariasen glass as first proposed 80 year...
Two-dimensionally extended amorphous carbon ("amorphous graphene") is a prototype system for disorde...
We used a novel vibrational dynamics model for planar disordered materials (the embedded ring approa...
We use liner-scaling tight-binding molecular dynamics to generate three structural models of bulk am...
This work discusses the electron transport mechanisms that we obtained as a function of the density ...
This work discusses the electron transport mechanisms that we obtained as a function of the density ...
Graphene is an important material for sensing and energy storage applications. Since the vast majori...
In this paper, we provide evidence that low density nano-porous amorphous carbon (a-C) consists of i...
A disorder-order transition from amorphous carbon (aC) to layered amorphous graphene (LAG) has been ...
Carbon has shown itself to be the most flexible of atoms, crystallizing in divergent phases such as ...
© 2022 Author(s).Amorphous materials have been used in a range of electronic and photonic applicatio...
Tight-binding molecular dynamics simulations reveal interesting physical trends in amorphous carbon ...
Disordered carbons comprise graphene fragments assembled into three-dimensional networks. It has lon...
Uwe Stephan Dissertation This work is concerned with methods and results for the calculation of el...
Amorphous graphene is a realization of a two-dimensional Zachariasen glass as first proposed 80 year...
Amorphous graphene is a realization of a two-dimensional Zachariasen glass as first proposed 80 year...
Two-dimensionally extended amorphous carbon ("amorphous graphene") is a prototype system for disorde...
We used a novel vibrational dynamics model for planar disordered materials (the embedded ring approa...
We use liner-scaling tight-binding molecular dynamics to generate three structural models of bulk am...
This work discusses the electron transport mechanisms that we obtained as a function of the density ...
This work discusses the electron transport mechanisms that we obtained as a function of the density ...
Graphene is an important material for sensing and energy storage applications. Since the vast majori...