Abstract: Two hybrid generalized-gradient approximation density functionals, WC04 and WP04, are optimized for the prediction of 13C and 1H chemical shifts, respectively, using a training set of 43 molecules in chloroform solution. Tests on molecules not included in the training set, namely six stereoisomeric methylcyclohexanols and a â-lactam antibiotic, indicate the models to be robust and moreover to provide results more accurate than those from equivalent B3LYP, PBE1, or mPW1PW91 calculations, particularly for the prediction of downfield resonances in nuclear magnetic resonance spectra. However, linear regression of the B3LYP, PBE1, and mPW1PW91 predicted values on the experimental data improves the accuracy of those models so that they ...
Tc-99 chemical shifts of TcO4-, TcH92-, TcOF5, TcO2F4-, TcOCl4-, Tc-2(CO)(10), and Tc(CO)(3)L-3(+) (...
Nuclear magnetic resonance (NMR) has become one of the most widely used techniques to provide struct...
Abstract When using nuclear magnetic resonance (NMR) to assist in chemical identification in complex...
The purpose of this paper is to convince practitioners of (1)H NMR spectroscopy to consider simple q...
We present a systematic density functional investigation on the prediction of the C-13, N-15, O-17, ...
Fifteen procedures based on hybrid density functional theory were used to calculate magnetic propert...
Analytic calculation of nuclear magnetic resonance chemical shielding tensors, based on gauge-includ...
The conceptual and numerical problems involved in the computation of reliable NMR chemical shifts fo...
© 2020 Wiley Periodicals LLC A systematic benchmark study of phosphorus and fluorine nuclear magneti...
Ab initio predictions of chemical shifts and electric field gradient (EFG) tensor components are fre...
This study aimed at investigating the performance of a series of basis sets, density functional theo...
The nuclear magnetic shieldings of two chloropyrimidine species have been predicted and analyzed by ...
Computational NMR has been used to assign the structure of numerous organic compounds, but limitatio...
Analytic calculation of nuclear magnetic resonance chemical shielding tensors, based on gauge-includ...
The development and implementation of sum-over-states density-functional-perturbation theory (SOS-DF...
Tc-99 chemical shifts of TcO4-, TcH92-, TcOF5, TcO2F4-, TcOCl4-, Tc-2(CO)(10), and Tc(CO)(3)L-3(+) (...
Nuclear magnetic resonance (NMR) has become one of the most widely used techniques to provide struct...
Abstract When using nuclear magnetic resonance (NMR) to assist in chemical identification in complex...
The purpose of this paper is to convince practitioners of (1)H NMR spectroscopy to consider simple q...
We present a systematic density functional investigation on the prediction of the C-13, N-15, O-17, ...
Fifteen procedures based on hybrid density functional theory were used to calculate magnetic propert...
Analytic calculation of nuclear magnetic resonance chemical shielding tensors, based on gauge-includ...
The conceptual and numerical problems involved in the computation of reliable NMR chemical shifts fo...
© 2020 Wiley Periodicals LLC A systematic benchmark study of phosphorus and fluorine nuclear magneti...
Ab initio predictions of chemical shifts and electric field gradient (EFG) tensor components are fre...
This study aimed at investigating the performance of a series of basis sets, density functional theo...
The nuclear magnetic shieldings of two chloropyrimidine species have been predicted and analyzed by ...
Computational NMR has been used to assign the structure of numerous organic compounds, but limitatio...
Analytic calculation of nuclear magnetic resonance chemical shielding tensors, based on gauge-includ...
The development and implementation of sum-over-states density-functional-perturbation theory (SOS-DF...
Tc-99 chemical shifts of TcO4-, TcH92-, TcOF5, TcO2F4-, TcOCl4-, Tc-2(CO)(10), and Tc(CO)(3)L-3(+) (...
Nuclear magnetic resonance (NMR) has become one of the most widely used techniques to provide struct...
Abstract When using nuclear magnetic resonance (NMR) to assist in chemical identification in complex...