A new approach is presented to improve the performance of semiempirical quantum mechanical (SQM) methods in the description of noncovalent interactions. To show the strategy, the PM6 Hamiltonian was selected, although, in general, the procedure can be applied to other semiempirical Hamiltonians and to different methodologies. A set of small molecules were selected as representative of various functional groups, and intermolecular potential energy curves (IPECs) were evaluated for the most relevant orientations of interacting molecular pairs. Then, analytical corrections to PM6 were derived from fits to B3LYP-D3/def2-TZVP reference–PM6 interaction energy differences. IPECs provided by the B3LYP-D3/def2-TZVP combination of the electronic stru...
With numerous new quantum chemistry methods being developed in recent years and the promise of even ...
ABSTRACT: We present an overview of “XSAPT”, a family of quantum chemistry methods for noncovalent i...
An assessment of a number of quantum mechanical/molecular mechanical (QM/MM) combinations was perfor...
A new approach is presented to improve the performance of semiempirical quantum mechanical (SQM) met...
ABSTRACT: Quantum mechanical (QM) calculations of noncovalent interactions are uniquely useful as to...
Semiempirical quantum mechanical (QM) methods with corrections for noncovalent interactions provide ...
The use of sophisticated methods for modeling complex systems is gaining ever more importance recent...
Semiempirical quantum mechanical methods with corrections for noncovalent interactions, namely dispe...
Recent successes and failures of the application of ‘enhanced’ semiempirical QM (SQM) methods are re...
Quantum mechanical (QM) calculations of noncovalent interactions are uniquely useful as tools to tes...
The semiempirical orthogonalization-corrected OM<i>x</i> methods (OM1, OM2, and OM3) go beyond the s...
Today's quantum chemistry methods are extremely powerful but rely upon complex quantities such as th...
Noncovalent interactions are of central importance to biochemical phenomena. This dissertation inclu...
International audienceWe review two essential features of the intermolecular interaction energies (Δ...
Semiempirical orthogonalization-corrected methods (OM1, OM2, and OM3) go beyond the standard MNDO mo...
With numerous new quantum chemistry methods being developed in recent years and the promise of even ...
ABSTRACT: We present an overview of “XSAPT”, a family of quantum chemistry methods for noncovalent i...
An assessment of a number of quantum mechanical/molecular mechanical (QM/MM) combinations was perfor...
A new approach is presented to improve the performance of semiempirical quantum mechanical (SQM) met...
ABSTRACT: Quantum mechanical (QM) calculations of noncovalent interactions are uniquely useful as to...
Semiempirical quantum mechanical (QM) methods with corrections for noncovalent interactions provide ...
The use of sophisticated methods for modeling complex systems is gaining ever more importance recent...
Semiempirical quantum mechanical methods with corrections for noncovalent interactions, namely dispe...
Recent successes and failures of the application of ‘enhanced’ semiempirical QM (SQM) methods are re...
Quantum mechanical (QM) calculations of noncovalent interactions are uniquely useful as tools to tes...
The semiempirical orthogonalization-corrected OM<i>x</i> methods (OM1, OM2, and OM3) go beyond the s...
Today's quantum chemistry methods are extremely powerful but rely upon complex quantities such as th...
Noncovalent interactions are of central importance to biochemical phenomena. This dissertation inclu...
International audienceWe review two essential features of the intermolecular interaction energies (Δ...
Semiempirical orthogonalization-corrected methods (OM1, OM2, and OM3) go beyond the standard MNDO mo...
With numerous new quantum chemistry methods being developed in recent years and the promise of even ...
ABSTRACT: We present an overview of “XSAPT”, a family of quantum chemistry methods for noncovalent i...
An assessment of a number of quantum mechanical/molecular mechanical (QM/MM) combinations was perfor...