The problem of nonlocal interactions in density functional theory calculations has in part been mitigated by the introduction of range-corrected functional methods. While promising solutions, the continued evaluation of range corrections in the structural simulations of complex molecular crystals is required to judge their efficacy in challenging chemical environments. Here, three pyridinium-based crystals, exhibiting a wide range of intramolecular and intermolecular interactions, are used as benchmark systems for gauging the accuracy of several range-corrected density functional techniques. The computational results are compared to low-temperature experimental single-crystal X-ray diffraction and terahertz spectroscopic measurements, enabl...
The non-covalent interactions in organic molecules are known to drive their self-assembly to form mo...
Accurate prediction of structure and stability of molecular crystals is crucial in materials science...
Since the inception of computational chemistry, its practitioners have imagined the ability to predi...
Several density functional methods with corrections for long-range dispersion interactions are evalu...
A comparative analysis of the intermolecular energy for a data set including 60 molecular crystals w...
The ambitious goal of organic crystal structure prediction challenges theoretical methods regarding ...
Molecular crystals are ubiquitous in many areas of science and engineering, including biology and me...
We present an assessment of the performance of several force fields for modelling intermolecular int...
The energy of interaction between molecules is commonly expressed in terms of four key components: e...
The development of new functionals and methods to accurately describe van der Waals forces in densit...
The method of dispersion correction as an add-on to standard Kohn-Sham density functional theory (DF...
We employ density-functional theory to calculate realistic parameters for an extended Hubbard model ...
Organic molecular crystals contain long-range dispersion interactions that can be challenging for so...
Organic molecular crystals contain long-range dispersion interactions that can be challenging for so...
The properties of numerous technologically important materials are determined by the crystal structu...
The non-covalent interactions in organic molecules are known to drive their self-assembly to form mo...
Accurate prediction of structure and stability of molecular crystals is crucial in materials science...
Since the inception of computational chemistry, its practitioners have imagined the ability to predi...
Several density functional methods with corrections for long-range dispersion interactions are evalu...
A comparative analysis of the intermolecular energy for a data set including 60 molecular crystals w...
The ambitious goal of organic crystal structure prediction challenges theoretical methods regarding ...
Molecular crystals are ubiquitous in many areas of science and engineering, including biology and me...
We present an assessment of the performance of several force fields for modelling intermolecular int...
The energy of interaction between molecules is commonly expressed in terms of four key components: e...
The development of new functionals and methods to accurately describe van der Waals forces in densit...
The method of dispersion correction as an add-on to standard Kohn-Sham density functional theory (DF...
We employ density-functional theory to calculate realistic parameters for an extended Hubbard model ...
Organic molecular crystals contain long-range dispersion interactions that can be challenging for so...
Organic molecular crystals contain long-range dispersion interactions that can be challenging for so...
The properties of numerous technologically important materials are determined by the crystal structu...
The non-covalent interactions in organic molecules are known to drive their self-assembly to form mo...
Accurate prediction of structure and stability of molecular crystals is crucial in materials science...
Since the inception of computational chemistry, its practitioners have imagined the ability to predi...