Periodic density functional theory (DFT) calculations have recently emerged as a popular tool for assigning solid-state nuclear magnetic resonance (NMR) spectra. However, in order for the calculations to yield accurate results, accurate structural models are also required. In many cases the structural model (often derived from crystallographic diffraction) must be optimised (i.e., to an energy minimum) using DFT prior to the calculation of NMR parameters. However, DFT does not reproduce weak long-range "dispersion'' interactions well, and optimisation using some functionals can expand the crystallographic unit cell, particularly when dispersion interactions are important in defining the structure. Recently, dispersion-corrected DFT (DFT-D) ...
We report a study of the CHA-type aluminophosphate AlPO-34, prepared with six different structure-di...
The authors acknowledge the EPSRC for support through the Collaborative Computational Project on NMR...
The high-resolution <sup>27</sup>Al- and <sup>31</sup>P- NMR spectra of two ...
Periodic density functional theory (DFT) calculations have recently emerged as a popular tool for as...
Periodic density functional theory (DFT) calculations have recently emerged as a popular tool for as...
Periodic density functional theory (DFT) calculations have recently emerged as a popular tool for as...
Periodic density functional theory (DFT) calculations have recently emerged as a popular tool for as...
Solid-state NMR spectra have historically been assigned using simple relationships between NMR param...
Solid-state NMR spectra have historically been assigned using simple relationships between NMR param...
Solid-state NMR spectra have historically been assigned using simple relationships between NMR param...
Solid-state NMR spectra have historically been assigned using simple relationships between NMR param...
31P NMR spectroscopy is a valuable technique for the characterization of the local structure of alum...
SEA would like to thank EPSRC for computational support through the Collaborative Computational Proj...
<sup>31</sup>P NMR spectroscopy is a valuable technique for the characterization of the local struct...
A multi-technique investigation involving X-ray diffraction, solid-state NMR and first-principle cal...
We report a study of the CHA-type aluminophosphate AlPO-34, prepared with six different structure-di...
The authors acknowledge the EPSRC for support through the Collaborative Computational Project on NMR...
The high-resolution <sup>27</sup>Al- and <sup>31</sup>P- NMR spectra of two ...
Periodic density functional theory (DFT) calculations have recently emerged as a popular tool for as...
Periodic density functional theory (DFT) calculations have recently emerged as a popular tool for as...
Periodic density functional theory (DFT) calculations have recently emerged as a popular tool for as...
Periodic density functional theory (DFT) calculations have recently emerged as a popular tool for as...
Solid-state NMR spectra have historically been assigned using simple relationships between NMR param...
Solid-state NMR spectra have historically been assigned using simple relationships between NMR param...
Solid-state NMR spectra have historically been assigned using simple relationships between NMR param...
Solid-state NMR spectra have historically been assigned using simple relationships between NMR param...
31P NMR spectroscopy is a valuable technique for the characterization of the local structure of alum...
SEA would like to thank EPSRC for computational support through the Collaborative Computational Proj...
<sup>31</sup>P NMR spectroscopy is a valuable technique for the characterization of the local struct...
A multi-technique investigation involving X-ray diffraction, solid-state NMR and first-principle cal...
We report a study of the CHA-type aluminophosphate AlPO-34, prepared with six different structure-di...
The authors acknowledge the EPSRC for support through the Collaborative Computational Project on NMR...
The high-resolution <sup>27</sup>Al- and <sup>31</sup>P- NMR spectra of two ...