Although the precise microscopic knowledge of van der Waals interactions is crucial for understanding bonding in weakly bonded layered compounds, very little quantitative information on the strength of interlayer interaction in these materials is available, either from experiments or simulations. Here, using many-body perturbation and advanced density-functional theory techniques, we calculate the interlayer binding and exfoliation energies for a large number of layered compounds and show that, independent of the electronic structure of the material, the energies for most systems are around 20 meV/Å2. This universality explains the successful exfoliation of a wide class of layered materials to produce two-dimensional systems, and furthers ...
peer reviewedvan der Waals (vdW) dispersion interactions are a key ingredient in the structure, stab...
Two different adsorption configurations of benzene on the Si(001)−(2×1) surface, the tight-bridge an...
peer reviewedThe accurate description of long-range electron correlation, most prominently including...
Although the precise microscopic knowledge of van der Waals interactions is crucial for understandin...
Although the precise microscopic knowledge of van der Waals interactions is crucial for understandin...
An efficient linear-scaling approach to the van der Waals density functional in electronic-structure...
A recent paper [J. Chem. Phys. 132, 134705 (2010)] illustrated the potential of the van der Waals de...
© 2018 American Physical Society. In 2012, Björkman et al. posed the question "Are we van der Waals ...
The density functional theory is, in principle, an exact ground-state method for interacting electro...
With the influence of progress in the materials informatics, development of fundamental database has...
Noncovalent van der Waals (vdW) interactions are responsible for a wide range of phenomena in matter...
Theoretical formulations capable of modeling chemical interactions over 3–4 orders of magnitude of b...
Detailed physisorption data from experiment for the H2 molecule on low-index Cu surfaces challenge t...
The exfoliation energy - quantifying the energy required to extract a two-dimensional (2D) sheet fro...
In this paper we introduce an efficient method for the calculation of the noncontact van der Waals i...
peer reviewedvan der Waals (vdW) dispersion interactions are a key ingredient in the structure, stab...
Two different adsorption configurations of benzene on the Si(001)−(2×1) surface, the tight-bridge an...
peer reviewedThe accurate description of long-range electron correlation, most prominently including...
Although the precise microscopic knowledge of van der Waals interactions is crucial for understandin...
Although the precise microscopic knowledge of van der Waals interactions is crucial for understandin...
An efficient linear-scaling approach to the van der Waals density functional in electronic-structure...
A recent paper [J. Chem. Phys. 132, 134705 (2010)] illustrated the potential of the van der Waals de...
© 2018 American Physical Society. In 2012, Björkman et al. posed the question "Are we van der Waals ...
The density functional theory is, in principle, an exact ground-state method for interacting electro...
With the influence of progress in the materials informatics, development of fundamental database has...
Noncovalent van der Waals (vdW) interactions are responsible for a wide range of phenomena in matter...
Theoretical formulations capable of modeling chemical interactions over 3–4 orders of magnitude of b...
Detailed physisorption data from experiment for the H2 molecule on low-index Cu surfaces challenge t...
The exfoliation energy - quantifying the energy required to extract a two-dimensional (2D) sheet fro...
In this paper we introduce an efficient method for the calculation of the noncontact van der Waals i...
peer reviewedvan der Waals (vdW) dispersion interactions are a key ingredient in the structure, stab...
Two different adsorption configurations of benzene on the Si(001)−(2×1) surface, the tight-bridge an...
peer reviewedThe accurate description of long-range electron correlation, most prominently including...