Non-covalent π−π interactions are central to chemical and biological processes, yet the full understanding of their origin that would unite the simplicity of empirical approaches with the accuracy of quantum calculations is still missing. Here we employ a quantum-mechanical Hamiltonian model for van der Waals interactions, to demonstrate that intermolecular electron correlation in large supramolecular complexes at equilibrium distances is appropriately described by collective charge fluctuations. We visualize these fluctuations and provide connections both to orbital-based approaches to electron correlation, as well as to the simple London pairwise picture. The reported binding energies of ten supramolecular complexes obtained from the quan...
Quantum-mechanical methods are used for understanding molecular interactions throughout the natural ...
Noncovalent interactions between molecules with stretched intramonomer covalent bonds are a fascinat...
It is known that interactions between molecules may change in the presence of nanostructures. Howeve...
Non-covalent π−π interactions are central to chemical and biological processes, yet the full underst...
Non-covalent π-π interactions are central to chemical and biological processes, yet the full underst...
peer reviewedMutual Coulomb interactions between electrons lead to a plethora of interesting physica...
Noncovalent interactions are ubiquitous in molecular and condensed-phase environments, and hence a r...
Noncovalent interactions are ubiquitous in molecular and condensed-phase environments, and hence a r...
This work reviews the increasing evidence that many-body van der Waals (vdW) or dispersion interacti...
Mutual Coulomb interactions between electrons lead to a plethora of interesting physical and chemica...
Noncovalent interactions are ubiquitous in molecular and condensed-phase environments, and hence a r...
Van der Waals (vdW) interactions are ubiquitous in molecules and condensed matter, and play a crucia...
van der Waals (vdW) dispersion interactions strongly impact the properties of molecules and material...
Intermolecular interactions are paramount for the stability, dynamics and response of systems acros...
It is known that interactions between molecules may change in the presence of nanostructures. Howeve...
Quantum-mechanical methods are used for understanding molecular interactions throughout the natural ...
Noncovalent interactions between molecules with stretched intramonomer covalent bonds are a fascinat...
It is known that interactions between molecules may change in the presence of nanostructures. Howeve...
Non-covalent π−π interactions are central to chemical and biological processes, yet the full underst...
Non-covalent π-π interactions are central to chemical and biological processes, yet the full underst...
peer reviewedMutual Coulomb interactions between electrons lead to a plethora of interesting physica...
Noncovalent interactions are ubiquitous in molecular and condensed-phase environments, and hence a r...
Noncovalent interactions are ubiquitous in molecular and condensed-phase environments, and hence a r...
This work reviews the increasing evidence that many-body van der Waals (vdW) or dispersion interacti...
Mutual Coulomb interactions between electrons lead to a plethora of interesting physical and chemica...
Noncovalent interactions are ubiquitous in molecular and condensed-phase environments, and hence a r...
Van der Waals (vdW) interactions are ubiquitous in molecules and condensed matter, and play a crucia...
van der Waals (vdW) dispersion interactions strongly impact the properties of molecules and material...
Intermolecular interactions are paramount for the stability, dynamics and response of systems acros...
It is known that interactions between molecules may change in the presence of nanostructures. Howeve...
Quantum-mechanical methods are used for understanding molecular interactions throughout the natural ...
Noncovalent interactions between molecules with stretched intramonomer covalent bonds are a fascinat...
It is known that interactions between molecules may change in the presence of nanostructures. Howeve...