The semiempirical orthogonalization-corrected OMx methods (OM1, OM2, and OM3) go beyond the standard MNDO model by including additional interactions in the electronic structure calculation. When augmented with empirical dispersion corrections, the resulting OMx-Dn approaches offer a fast and robust treatment of noncovalent interactions. Here we evaluate the performance of the OMx and OMx-Dn methods for a variety of ground-state properties using a large and diverse collection of benchmark sets from the literature, with a total of 13035 original and derived reference data. Extensive comparisons are made with the results from established semiempirical methods (MNDO, AM1, PM3, PM6, and PM7) that also use the NDDO (neglect of diatomic differenti...
ABSTRACT: Quantum mechanical (QM) calculations of noncovalent interactions are uniquely useful as to...
A new approach is presented to improve the performance of semiempirical quantum mechanical (SQM) met...
The basic approximations of the MNDO (modified neglect of diatomic overlap) method are described inc...
The semiempirical orthogonalization-corrected OM<i>x</i> methods (OM1, OM2, and OM3) go beyond the s...
Semiempirical orthogonalization-corrected methods (OM1, OM2, and OM3) go beyond the standard MNDO mo...
We present two new semiempirical quantum-chemical methods with orthogonalization and dispersion corr...
The semiempirical methods of quantum chemistry are reviewed, with emphasis on established neglect of...
We present two new semiempirical quantum-chemical methods with orthogonalization and dispersion corr...
The semiempirical orthogonalization-corrected OMx methods have recently been shown to perform well i...
The semiempirical methods of the OMx family (orthogonalization models OM1, OM2, and OM3) are known t...
Most modern semiempirical quantum‐chemical (SQC) methods are based on the neglect of diatomic differ...
Recent methodological developments in our group include the extension of the semiempirical MNDO form...
Two new semiempirical methods employing a Pairwise Distance Directed Gaussian modification have been...
We investigate possible improvements in the accuracy of semiempirical quantum chemistry (SQC) method...
Semiempirical quantum mechanical methods with corrections for noncovalent interactions, namely dispe...
ABSTRACT: Quantum mechanical (QM) calculations of noncovalent interactions are uniquely useful as to...
A new approach is presented to improve the performance of semiempirical quantum mechanical (SQM) met...
The basic approximations of the MNDO (modified neglect of diatomic overlap) method are described inc...
The semiempirical orthogonalization-corrected OM<i>x</i> methods (OM1, OM2, and OM3) go beyond the s...
Semiempirical orthogonalization-corrected methods (OM1, OM2, and OM3) go beyond the standard MNDO mo...
We present two new semiempirical quantum-chemical methods with orthogonalization and dispersion corr...
The semiempirical methods of quantum chemistry are reviewed, with emphasis on established neglect of...
We present two new semiempirical quantum-chemical methods with orthogonalization and dispersion corr...
The semiempirical orthogonalization-corrected OMx methods have recently been shown to perform well i...
The semiempirical methods of the OMx family (orthogonalization models OM1, OM2, and OM3) are known t...
Most modern semiempirical quantum‐chemical (SQC) methods are based on the neglect of diatomic differ...
Recent methodological developments in our group include the extension of the semiempirical MNDO form...
Two new semiempirical methods employing a Pairwise Distance Directed Gaussian modification have been...
We investigate possible improvements in the accuracy of semiempirical quantum chemistry (SQC) method...
Semiempirical quantum mechanical methods with corrections for noncovalent interactions, namely dispe...
ABSTRACT: Quantum mechanical (QM) calculations of noncovalent interactions are uniquely useful as to...
A new approach is presented to improve the performance of semiempirical quantum mechanical (SQM) met...
The basic approximations of the MNDO (modified neglect of diatomic overlap) method are described inc...