An implementation of the Interacting Quantum Atoms method for crystals is presented. It provides a real space energy decomposition of the energy of crystals in which all energy components are physically meaningful. The new package ChemInt enables one to compute intra-atomic and inter-atomic energies, as well as electron population measures used for quantitative description of chemical bonds in crystals. The implementation is tested and applied to characteristic molecular and crystalline systems with different types of bonding
The analysis of the crystal structures in the CSD was used to recognize and characterize new types o...
Thermodynamics is a well-established discipline of physics for properties of matter in thermal equil...
When using quantum chemistry techniques to calculate the energetics of bulk crystals, there is a nee...
The lattice energies of 47 crystal structures of organic compounds spanning a wide range of chemical...
We present a new method to calculate lattice and intermolecular interaction energies for molecular c...
Quantum crystals abound in the whole range of solid-state species. Below a certain threshold tempera...
A review. The anal., prediction, and control of crystal structures are frontier topics in present-d...
We extend the generalized energy-based fragmentation (GEBF) approach to molecular crystals under per...
A general, computationally easy method for minimizing the steric energy of a molecule, polymer, surf...
Quantum chemical calculations including electron correlation and calculations with the density sums ...
The problem of describing quantum mechanically a region of interest in an otherwise extended lattice...
A fast, fragment-based hybrid many-body interaction model is used to optimize the structures of five...
Quantum Chemistry of Solids delivers a comprehensive account of the main features and possibilities ...
A new software implementation built into the Cambridge Crystallographic Data Centre’s (CCDC) Mercury...
AbstractA crystal-chemical model of atomic interactions has been suggested which considers the condi...
The analysis of the crystal structures in the CSD was used to recognize and characterize new types o...
Thermodynamics is a well-established discipline of physics for properties of matter in thermal equil...
When using quantum chemistry techniques to calculate the energetics of bulk crystals, there is a nee...
The lattice energies of 47 crystal structures of organic compounds spanning a wide range of chemical...
We present a new method to calculate lattice and intermolecular interaction energies for molecular c...
Quantum crystals abound in the whole range of solid-state species. Below a certain threshold tempera...
A review. The anal., prediction, and control of crystal structures are frontier topics in present-d...
We extend the generalized energy-based fragmentation (GEBF) approach to molecular crystals under per...
A general, computationally easy method for minimizing the steric energy of a molecule, polymer, surf...
Quantum chemical calculations including electron correlation and calculations with the density sums ...
The problem of describing quantum mechanically a region of interest in an otherwise extended lattice...
A fast, fragment-based hybrid many-body interaction model is used to optimize the structures of five...
Quantum Chemistry of Solids delivers a comprehensive account of the main features and possibilities ...
A new software implementation built into the Cambridge Crystallographic Data Centre’s (CCDC) Mercury...
AbstractA crystal-chemical model of atomic interactions has been suggested which considers the condi...
The analysis of the crystal structures in the CSD was used to recognize and characterize new types o...
Thermodynamics is a well-established discipline of physics for properties of matter in thermal equil...
When using quantum chemistry techniques to calculate the energetics of bulk crystals, there is a nee...