van der Waals (vdW) dispersion interactions are a key ingredient in the structure, stability, and response properties of many molecular materials and essential for us to be able to understand and design novel intricate molecular systems. Pairwise-additive models of vdW interactions are ubiquitous, but neglect their true quantum-mechanical many-body nature. In this perspective we focus on recent developments and applications of methods that can capture collective and many-body effects in vdW interactions. Highlighting a number of recent studies in this area, we demonstrate both the need for and usefulness of explicit many-body treatments for obtaining qualitative and quantitative accuracy for modelling molecular materials, with applications ...
Non-covalent interactions pervade all matter and play a fundamental role in layered materials, biolo...
Dispersion (van der Waals or vdW) interactions are long-range, non-local in nature, and can be impor...
peer reviewedvan der Waals (vdW) dispersion interactions strongly impact the properties of molecules...
peer reviewedvan der Waals (vdW) dispersion interactions are a key ingredient in the structure, stab...
peer reviewedNoncovalent van der Waals (vdW) or dispersion forces are ubiquitous in nature and infl...
peer reviewedVan der Waals (vdW) interactions are ubiquitous in molecules and condensed matter, and ...
Van der Waals (vdW) interactions arise from correlated electronic fluctuations in matter and are the...
peer reviewedThe accurate description of long-range electron correlation, most prominently including...
Noncovalent van der Waals (vdW) interactions are responsible for a wide range of phenomena in matter...
This work reviews the increasing evidence that many-body van der Waals (vdW) or dispersion interacti...
peer reviewedThe development and application of computational methods for studying molecular crystal...
We estimate polarizabilities of atoms in molecules without electron density, using a Voronoi tessela...
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...
Non-covalent interactions pervade all matter and play a fundamental role in layered materials, biolo...
Dispersion (van der Waals or vdW) interactions are long-range, non-local in nature, and can be impor...
peer reviewedvan der Waals (vdW) dispersion interactions strongly impact the properties of molecules...
peer reviewedvan der Waals (vdW) dispersion interactions are a key ingredient in the structure, stab...
peer reviewedNoncovalent van der Waals (vdW) or dispersion forces are ubiquitous in nature and infl...
peer reviewedVan der Waals (vdW) interactions are ubiquitous in molecules and condensed matter, and ...
Van der Waals (vdW) interactions arise from correlated electronic fluctuations in matter and are the...
peer reviewedThe accurate description of long-range electron correlation, most prominently including...
Noncovalent van der Waals (vdW) interactions are responsible for a wide range of phenomena in matter...
This work reviews the increasing evidence that many-body van der Waals (vdW) or dispersion interacti...
peer reviewedThe development and application of computational methods for studying molecular crystal...
We estimate polarizabilities of atoms in molecules without electron density, using a Voronoi tessela...
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...
Non-covalent interactions pervade all matter and play a fundamental role in layered materials, biolo...
Dispersion (van der Waals or vdW) interactions are long-range, non-local in nature, and can be impor...
peer reviewedvan der Waals (vdW) dispersion interactions strongly impact the properties of molecules...