The energy of interaction between molecules is commonly expressed in terms of four key components: electrostatic, polarization, dispersion, and exchange-repulsion. Using monomer wave functions to obtain accurate estimates of electrostatic, polarization, and repulsion energies along with Grimme’s dispersion corrections, a series of energy models are derived by fitting to dispersion-corrected DFT energies for a large number of molecular pairs extracted from organic and inorganic molecular crystals. The best performing model reproduces B3LYP-D2/6-31G(d,p) counterpoise-corrected energies with a mean absolute deviation (MAD) of just over 1 kJ mol–1 but in considerably less computation time. It also performs surprisingly well against benchmark CC...
.ABSTRACT: The self-consistent Madelung potential SCMP approach for calculating molecular wave funct...
A comparative assessment of the accuracy of different quantum mechanical methods for evaluating the ...
Organic molecular crystals contain long-range dispersion interactions that can be challenging for so...
The energy of interaction between molecules is commonly expressed in terms of four key components: e...
A fast, fragment-based hybrid many-body interaction model is used to optimize the structures of five...
A comparative analysis of the intermolecular energy for a data set including 60 molecular crystals w...
Since the inception of computational chemistry, its practitioners have imagined the ability to predi...
Since the inception of computational chemistry, its practitioners have imagined the ability to predi...
We present a new method to calculate lattice and intermolecular interaction energies for molecular c...
Quantum chemical calculations including electron correlation and calculations with the density sums ...
An atom-atom intermolecular force field with subdivision of interaction energies into Coulombic-pola...
In lattice energy models that combine ab initio and empirical components, it is important to ensure ...
Crystal structure prediction (CSP) has been a problem of great industrial interest but also a fundam...
ABSTRACT: An efficient, monomer-based electronic structure method is introduced for computing noncov...
Organic molecular crystals contain long-range dispersion interactions that can be challenging for so...
.ABSTRACT: The self-consistent Madelung potential SCMP approach for calculating molecular wave funct...
A comparative assessment of the accuracy of different quantum mechanical methods for evaluating the ...
Organic molecular crystals contain long-range dispersion interactions that can be challenging for so...
The energy of interaction between molecules is commonly expressed in terms of four key components: e...
A fast, fragment-based hybrid many-body interaction model is used to optimize the structures of five...
A comparative analysis of the intermolecular energy for a data set including 60 molecular crystals w...
Since the inception of computational chemistry, its practitioners have imagined the ability to predi...
Since the inception of computational chemistry, its practitioners have imagined the ability to predi...
We present a new method to calculate lattice and intermolecular interaction energies for molecular c...
Quantum chemical calculations including electron correlation and calculations with the density sums ...
An atom-atom intermolecular force field with subdivision of interaction energies into Coulombic-pola...
In lattice energy models that combine ab initio and empirical components, it is important to ensure ...
Crystal structure prediction (CSP) has been a problem of great industrial interest but also a fundam...
ABSTRACT: An efficient, monomer-based electronic structure method is introduced for computing noncov...
Organic molecular crystals contain long-range dispersion interactions that can be challenging for so...
.ABSTRACT: The self-consistent Madelung potential SCMP approach for calculating molecular wave funct...
A comparative assessment of the accuracy of different quantum mechanical methods for evaluating the ...
Organic molecular crystals contain long-range dispersion interactions that can be challenging for so...