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Journal ArticleDOI

First-principles calculation of the 17O NMR parameters of a calcium aluminosilicate glass

TLDR
The simulated 2D-3QMAS NMR spectrum of the CAS glass is in very good agreement with the available experimental data, notably because it takes into account the disorder present in the glass.
Abstract
We have computed the 17O NMR parameters of an amorphous calcium aluminosilicate (CAS) from firstprinciples. The atomic coordinates of a CAS glass of composition (CaO)0.21(Al2O 3)0.12(SiO 2)0.67 were obtained by quenching a liquid to room temperature by the means of ab initio molecular-dynamics simulations of the Car-Parrinello type. The structure of the glass is found to be overall in good agreement with diffraction experiments. Some excess nonbridging O (NBO) atoms are found and are compensated by tricluster O atoms, i.e., by 3-fold coordinated O atoms to 4-fold coordinated Al or Si atoms. The glass coordinates were used to compute the 17O NMR parameters using GGA-DFT and a correction of the Ca 3d orbital energy. The chemical shifts and the electric field gradients were obtained with the gauge including projector augmented-wave (GIPAW) and the projector augmented-wave (PAW) methods, respectively. The simulated 2D-3QMAS NMR spectrum of the CAS glass is in very good agreement with the available experimental data, notably because it takes into account the disorder present in the glass. This agreement further validates our CAS glass model. We show that the oxygen triclusters are not visible in a 2D-3QMAS NMR 17O spectrum since their NMR parameters overlap with those of the Al-O-Si, Si-O-Si, or Al-O-Al sites. Finally, correlations between the structural characteristics and the values of the NMR parameters are extracted from the calculation with the aim of helping the interpretation of NMR spectra of glasses of similar compositions.

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Citations
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Journal ArticleDOI

Calculation of NMR chemical shifts for extended systems using ultrasoft pseudopotentials

TL;DR: In this article, the authors present a scheme for the calculation of magnetic response parameters in insulators using ultrasoft pseudopotentials, which uses the gauge-including projector augmented wave method to obtain allelectron accuracy for both finite and infinitely periodic systems.
Journal ArticleDOI

The PAW/GIPAW approach for computing NMR parameters: a new dimension added to NMR study of solids.

TL;DR: The GIPAW method roots in the plane wave pseudopotential formalism of the density functional theory (DFT), and avoids the use of the cluster approximation, and is quickly becoming an essential tool for interpreting and understanding experimental NMR spectra, providing reliable assignments of the observed resonances to crystallographic sites or enabling a priori prediction of NMR data.
Journal ArticleDOI

A computer simulation study of natural silicate melts. Part I: Low pressure properties

TL;DR: In this paper, a simple interionic potential developed to describe the nine component system K2O-Na2O−CaO−MgO−FeO-Fe3−Al2O3−TiO2-SiO2 (KNCMFATS) was implemented into a molecular dynamics simulation code and a key feature of the simulation is to make the link between macroscopic properties of the melt and its microscopic structure and dynamics.
Journal ArticleDOI

Probing proton-proton proximities in the solid state

TL;DR: The power of NMR as a site-specific probe of structure and dynamics is principally a consequence of the chemical shift by which different chemical environments are distinguished and, on the other hand, the coupling of nuclear spins so as to reveal through-bond connectivities or through-space proximities via J or dipolar couplings, respectively.
References
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Journal ArticleDOI

Generalized Gradient Approximation Made Simple

TL;DR: A simple derivation of a simple GGA is presented, in which all parameters (other than those in LSD) are fundamental constants, and only general features of the detailed construction underlying the Perdew-Wang 1991 (PW91) GGA are invoked.
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Development of the Colle-Salvetti correlation-energy formula into a functional of the electron density

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Projector augmented-wave method

TL;DR: An approach for electronic structure calculations is described that generalizes both the pseudopotential method and the linear augmented-plane-wave (LAPW) method in a natural way and can be used to treat first-row and transition-metal elements with affordable effort and provides access to the full wave function.
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Self-Consistent Equations Including Exchange and Correlation Effects

TL;DR: In this paper, the Hartree and Hartree-Fock equations are applied to a uniform electron gas, where the exchange and correlation portions of the chemical potential of the gas are used as additional effective potentials.
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Density-functional exchange-energy approximation with correct asymptotic behavior.

TL;DR: This work reports a gradient-corrected exchange-energy functional, containing only one parameter, that fits the exact Hartree-Fock exchange energies of a wide variety of atomic systems with remarkable accuracy, surpassing the performance of previous functionals containing two parameters or more.
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