Fabrication of high-performance heterostructure devices requires fundamental understanding of the diffusion dynamics of metal species on 2D materials. Here, we investigate the room-temperature diffusion of Ag, Au, Cu, Pd, Pt, and Ru adatoms on graphene using ab initio and classical molecular dynamics simulations. We find that Ag, Au, Cu, and Pd follow Lévy walks, in which adatoms move continuously within ∼1–4 nm2 domains during ∼0.04 ns timeframes, and they occasionally perform ∼2–4 nm flights across multiple surface adsorption sites. This anomalous diffusion pattern is associated with a flat (<50 meV) potential energy landscape (PEL), which renders surface vibrations important for adatom migration. The latter is not the case for Pt and ...
Quenched molecular dynamics simulations and density-functional theory (DFT) calculations are used to...
Recent studies of single-atom catalysts open up the prospect of designing exceptionally active and e...
This chapter reviews structural, electronic, and diffusion properties of graphene nano-flakes growin...
We study the diffusion dynamics, the diffusion mechanisms, and the adsorption energetics of Ag, Au, ...
We study the diffusion dynamics, the diffusion mechanisms, and the adsorption energetics of Ag, Au, ...
We use a combined experimental and theoretical approach to study the rates of surface diffusion proc...
We use a combined experimental and theoretical approach to study the rates of surface diffusion proc...
We use a combined experimental and theoretical approach to study the rates of surface diffusion proc...
This thesis is a theoretical study of atomic diffusion processes in condensed matter, with particula...
This thesis is a theoretical study of atomic diffusion processes in condensed matter, with particula...
Recent studies of single-atom catalysts open up the prospect of designing exceptionally active and e...
International audienceWe use a combined experimental and theoretical approach to study the rates of ...
Inspired by recent studies of various two-dimensional (2D) metals such as Au, Fe and Ag, we study th...
Thin films are nanoscale layers of material used to functionalize surfaces or to serve as building b...
Thin films are nanoscale layers of material used to functionalize surfaces or to serve as building b...
Quenched molecular dynamics simulations and density-functional theory (DFT) calculations are used to...
Recent studies of single-atom catalysts open up the prospect of designing exceptionally active and e...
This chapter reviews structural, electronic, and diffusion properties of graphene nano-flakes growin...
We study the diffusion dynamics, the diffusion mechanisms, and the adsorption energetics of Ag, Au, ...
We study the diffusion dynamics, the diffusion mechanisms, and the adsorption energetics of Ag, Au, ...
We use a combined experimental and theoretical approach to study the rates of surface diffusion proc...
We use a combined experimental and theoretical approach to study the rates of surface diffusion proc...
We use a combined experimental and theoretical approach to study the rates of surface diffusion proc...
This thesis is a theoretical study of atomic diffusion processes in condensed matter, with particula...
This thesis is a theoretical study of atomic diffusion processes in condensed matter, with particula...
Recent studies of single-atom catalysts open up the prospect of designing exceptionally active and e...
International audienceWe use a combined experimental and theoretical approach to study the rates of ...
Inspired by recent studies of various two-dimensional (2D) metals such as Au, Fe and Ag, we study th...
Thin films are nanoscale layers of material used to functionalize surfaces or to serve as building b...
Thin films are nanoscale layers of material used to functionalize surfaces or to serve as building b...
Quenched molecular dynamics simulations and density-functional theory (DFT) calculations are used to...
Recent studies of single-atom catalysts open up the prospect of designing exceptionally active and e...
This chapter reviews structural, electronic, and diffusion properties of graphene nano-flakes growin...