This study aimed at investigating the performance of a series of basis sets, density functional theory (DFT) functionals, and the IEF-PCM solvation model in the accurate calculation of <sup>1</sup>H and <sup>13</sup>C NMR chemical shifts in toluene-<i>d</i><sub>8</sub>. We demonstrated that, on a test set of 37 organic species with various functional moieties, linear scaling significantly improved the calculated shifts and was necessary to obtain more accurate results. Inclusion of a solvation model produced larger deviations from the experimental data as compared to the gas-phase calculations. Moreover, we did not find any evidence that very large basis sets were necessary to reproduce the experimental NMR data. Ultimately, we recommend th...
In this work, differences between C-13 chemical shift calculated by the linear addition method (LAM)...
Optimized shifting and/or scaling factors for calculating one-bond carbon–hydrogen spin–spin couplin...
The performance of 250 different computational protocols (combinations of density functionals, basis...
The purpose of this paper is to convince practitioners of (1)H NMR spectroscopy to consider simple q...
Abstract: Two hybrid generalized-gradient approximation density functionals, WC04 and WP04, are opti...
The accuracy of both Gauge-including atomic orbital (GIAO) and continuous set of gauge transformatio...
An extensive study of error distributions for calculating hydrogen and carbon NMR chemical shifts at...
A quantum-chemistry based protocol, termed MOSS-DFT, is presented for the prediction of <sup>13</sup...
The conceptual and numerical problems involved in the computation of reliable NMR chemical shifts fo...
We present a systematic density functional investigation on the prediction of the C-13, N-15, O-17, ...
Abstract When using nuclear magnetic resonance (NMR) to assist in chemical identification in complex...
Experimental solid-state nuclear magnetic resonance (SS-NMR) has been used to analyze different theo...
Ab initio predictions of chemical shifts and electric field gradient (EFG) tensor components are fre...
We present the first systematic investigation of shifts in the nuclear magnetic resonance (NMR) shie...
<p>Using computational chemistry methodology, we evaluate the proton magnetic shieldings and the cor...
In this work, differences between C-13 chemical shift calculated by the linear addition method (LAM)...
Optimized shifting and/or scaling factors for calculating one-bond carbon–hydrogen spin–spin couplin...
The performance of 250 different computational protocols (combinations of density functionals, basis...
The purpose of this paper is to convince practitioners of (1)H NMR spectroscopy to consider simple q...
Abstract: Two hybrid generalized-gradient approximation density functionals, WC04 and WP04, are opti...
The accuracy of both Gauge-including atomic orbital (GIAO) and continuous set of gauge transformatio...
An extensive study of error distributions for calculating hydrogen and carbon NMR chemical shifts at...
A quantum-chemistry based protocol, termed MOSS-DFT, is presented for the prediction of <sup>13</sup...
The conceptual and numerical problems involved in the computation of reliable NMR chemical shifts fo...
We present a systematic density functional investigation on the prediction of the C-13, N-15, O-17, ...
Abstract When using nuclear magnetic resonance (NMR) to assist in chemical identification in complex...
Experimental solid-state nuclear magnetic resonance (SS-NMR) has been used to analyze different theo...
Ab initio predictions of chemical shifts and electric field gradient (EFG) tensor components are fre...
We present the first systematic investigation of shifts in the nuclear magnetic resonance (NMR) shie...
<p>Using computational chemistry methodology, we evaluate the proton magnetic shieldings and the cor...
In this work, differences between C-13 chemical shift calculated by the linear addition method (LAM)...
Optimized shifting and/or scaling factors for calculating one-bond carbon–hydrogen spin–spin couplin...
The performance of 250 different computational protocols (combinations of density functionals, basis...