This thesis examines three approximations that significantly reduce the computational time of theoretical NMR shielding calculations for large molecules, whilst largely retaining the accuracy of the parent method: fragmentation, locally dense basis sets and composite methods. For fragmentation it is established that Level 4 fragments reliably reproduce full molecule shieldings, when hydrogen bonds are treated as single bonds, and long range through space corrections are incorporated through the McConnell equation and background charges. The pcS-n basis set family is demonstrated to converge more rapidly towards the basis set limit than all other examined families. Furth...
1. D.B. Chesnut and K.D. Moore, J. Comput. Chem, 10, 648, 1989.Author Institution: Department of Che...
The development and implementation of sum-over-states density-functional-perturbation theory (SOS-DF...
Nuclear magnetic resonance (NMR) is a tool used to probe the physical and chemical environments of s...
This paper presents a systematic study of applying composite method approximations with locally dens...
This paper presents a systematic study of applying composite method approximations with locally dens...
This paper presents a systematic study of partitioning schemes for locally dense basis sets in the c...
NMR is a powerful tool for obtaining information on the structural characterization and dynamics of ...
Full-protein nuclear magnetic resonance (NMR) shielding constants based on <i>ab initio</i> calculat...
Two finite-field implementations for the calculation of chemical shieldings of molecular systems usi...
In the following thesis the calculation of the NMR shieldings of the nuclei within a variety of mole...
Nuclear magnetic resonance (NMR) spectroscopy is an essential analytic technique in chemical, pharma...
The prediction of nuclear magnetic resonance (NMR) shielding parameters for the N atom represents a ...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
Nuclear magnetic shieldings have been calculated at the density functional theory (DFT) level for st...
1. D.B. Chesnut and K.D. Moore, J. Comput. Chem, 10, 648, 1989.Author Institution: Department of Che...
The development and implementation of sum-over-states density-functional-perturbation theory (SOS-DF...
Nuclear magnetic resonance (NMR) is a tool used to probe the physical and chemical environments of s...
This paper presents a systematic study of applying composite method approximations with locally dens...
This paper presents a systematic study of applying composite method approximations with locally dens...
This paper presents a systematic study of partitioning schemes for locally dense basis sets in the c...
NMR is a powerful tool for obtaining information on the structural characterization and dynamics of ...
Full-protein nuclear magnetic resonance (NMR) shielding constants based on <i>ab initio</i> calculat...
Two finite-field implementations for the calculation of chemical shieldings of molecular systems usi...
In the following thesis the calculation of the NMR shieldings of the nuclei within a variety of mole...
Nuclear magnetic resonance (NMR) spectroscopy is an essential analytic technique in chemical, pharma...
The prediction of nuclear magnetic resonance (NMR) shielding parameters for the N atom represents a ...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
Nuclear Magnetic resonance and quantum chemistry have been recognized to be strong tools for probing...
Nuclear magnetic shieldings have been calculated at the density functional theory (DFT) level for st...
1. D.B. Chesnut and K.D. Moore, J. Comput. Chem, 10, 648, 1989.Author Institution: Department of Che...
The development and implementation of sum-over-states density-functional-perturbation theory (SOS-DF...
Nuclear magnetic resonance (NMR) is a tool used to probe the physical and chemical environments of s...