Binding energies, potential energy curves, and equilibrium intermonomer distances describing the interaction between benzene and a series of first - and second-row hydrides and rare gas atoms are calculated using coupled-cluster theory with single, double, and perturbative triple excitations(CCSD(T))in conjunction with a large augmented quadruple-ξ basis set(aug-cc-pVQZ). These benchmark results are accurate to within one eighth of 1 kcal/mol and, as such, provide a reliable foundation for the development and testing of more approximate methods for calculating long-range and noncovalent interactions
The benzene-ArT1intermolecular potential energy surface is evaluated using the coupled cluster linea...
Benzene-fluorobenzene complexes are used as model systems to simulate the interactions of the SBB-HC...
In this work, I develop theories, and their implementations, for the high-accuracy study of large mo...
Algorithms for calculating singlet excitation energies in the coupled cluster singles and doubles (C...
Weak noncovalent interactions such as van der Waals and hydrogen bonding are ubiquitous in nature, y...
Potential energy curves for the parallel-displaced, T-shaped and sandwich structures of the benzene ...
We give an overview of quantum chemical methods with a particular emphasis on the devel-opment of hi...
Author Institution: Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 9...
Using basis-set extrapolation schemes for a given data set, we evaluated the binding energies and ge...
Equilibrium dissociation energies Deof the benzene-argon van der Waals complex are calculated in the...
High-quality benchmark computations are critical for the development and assessment of approximate m...
Structures and binding in small water-benzene complexes (1-8 water molecules and 1-2 benzene molecul...
Algorithms for calculating singlet excitation energies in the coupled cluster singles and doubles (C...
The density-functional approach based on the partition into subsystems was applied to study the benz...
Adsorption of gas molecules in metal-organic frameworks is governed by many factors, the most domina...
The benzene-ArT1intermolecular potential energy surface is evaluated using the coupled cluster linea...
Benzene-fluorobenzene complexes are used as model systems to simulate the interactions of the SBB-HC...
In this work, I develop theories, and their implementations, for the high-accuracy study of large mo...
Algorithms for calculating singlet excitation energies in the coupled cluster singles and doubles (C...
Weak noncovalent interactions such as van der Waals and hydrogen bonding are ubiquitous in nature, y...
Potential energy curves for the parallel-displaced, T-shaped and sandwich structures of the benzene ...
We give an overview of quantum chemical methods with a particular emphasis on the devel-opment of hi...
Author Institution: Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 9...
Using basis-set extrapolation schemes for a given data set, we evaluated the binding energies and ge...
Equilibrium dissociation energies Deof the benzene-argon van der Waals complex are calculated in the...
High-quality benchmark computations are critical for the development and assessment of approximate m...
Structures and binding in small water-benzene complexes (1-8 water molecules and 1-2 benzene molecul...
Algorithms for calculating singlet excitation energies in the coupled cluster singles and doubles (C...
The density-functional approach based on the partition into subsystems was applied to study the benz...
Adsorption of gas molecules in metal-organic frameworks is governed by many factors, the most domina...
The benzene-ArT1intermolecular potential energy surface is evaluated using the coupled cluster linea...
Benzene-fluorobenzene complexes are used as model systems to simulate the interactions of the SBB-HC...
In this work, I develop theories, and their implementations, for the high-accuracy study of large mo...