It is known that interactions between molecules may change in the presence of nanostructures. However, the exact mechanisms that dictate the tuning of intermolecular interactions remain largely unexplored in computational studies. Here, we employ density-functional calculations with the recently developed many-body dispersion (MBD) method to investigate intermolecular three-body interaction energies (where bodies can be molecules or nanostructures) in a set of nanocomposites. We analyze three representative complexes that display distinct behavior in their interaction profiles, and unravel the physical reasons behind the observed differences. We demonstrate that many-body van der Waals (vdW) interactions can be repulsive, attractive, or neu...
We present numerical estimates of the leading two- and three-body dispersion energy terms in van der...
van der Waals (vdW) dispersion interactions strongly impact the properties of molecules and material...
We study to what extent dielectric nanoparticles prefer to self-assemble into linear chains or into ...
It is known that interactions between molecules may change in the presence of nanostructures. Howeve...
It is known that interactions between molecules may change in the presence of nanostructures. Howeve...
van der Waals (vdW) dispersion interactions are a key ingredient in the structure, stability, and re...
This work reviews the increasing evidence that many-body van der Waals (vdW) or dispersion interacti...
Non-covalent van der Waals interactions play a major role at the nanoscale, and even a slight change...
Van der Waals (vdW) interactions are ubiquitous in molecules and condensed matter, and play a crucia...
Long-ranged van der Waals (vdW) interactions are most often treated via Lennard-Jones approaches bas...
The near endless possibilities for assembling molecular materials has long posed a difficult challen...
Intermolecular interactions are paramount for the stability, dynamics and response of systems acros...
Supramolecular host-guest Systems play an important role for a wide range of applications in chemist...
We present numerical estimates of the leading two- and three-body dispersion energy terms in van der...
van der Waals (vdW) dispersion interactions strongly impact the properties of molecules and material...
We study to what extent dielectric nanoparticles prefer to self-assemble into linear chains or into ...
It is known that interactions between molecules may change in the presence of nanostructures. Howeve...
It is known that interactions between molecules may change in the presence of nanostructures. Howeve...
van der Waals (vdW) dispersion interactions are a key ingredient in the structure, stability, and re...
This work reviews the increasing evidence that many-body van der Waals (vdW) or dispersion interacti...
Non-covalent van der Waals interactions play a major role at the nanoscale, and even a slight change...
Van der Waals (vdW) interactions are ubiquitous in molecules and condensed matter, and play a crucia...
Long-ranged van der Waals (vdW) interactions are most often treated via Lennard-Jones approaches bas...
The near endless possibilities for assembling molecular materials has long posed a difficult challen...
Intermolecular interactions are paramount for the stability, dynamics and response of systems acros...
Supramolecular host-guest Systems play an important role for a wide range of applications in chemist...
We present numerical estimates of the leading two- and three-body dispersion energy terms in van der...
van der Waals (vdW) dispersion interactions strongly impact the properties of molecules and material...
We study to what extent dielectric nanoparticles prefer to self-assemble into linear chains or into ...