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Intermolecular shielding contributions studied by modeling the 13 C chemical-shift tensors of organic single crystals with plane waves

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TLDR
The accuracy of the density functional theory gauge-including projector augmented wave method, which uses pseudopotentials to approximate the nodal structure of the core electrons, to determine the magnetic properties of crystals by predicting the full chemical-shift tensors of all (13)C nuclides in 14 organic single crystals, is assessed.
Abstract
In order to predict accurately the chemical shift of NMR-active nuclei in solid phase systems, magnetic shielding calculations must be capable of considering the complete lattice structure. Here we assess the accuracy of the density functional theory gauge-including projector augmented wave method, which uses pseudopotentials to approximate the nodal structure of the core electrons, to determine the magnetic properties of crystals by predicting the full chemical-shift tensors of all (13)C nuclides in 14 organic single crystals from which experimental tensors have previously been reported. Plane-wave methods use periodic boundary conditions to incorporate the lattice structure, providing a substantial improvement for modeling the chemical shifts in hydrogen-bonded systems. Principal tensor components can now be predicted to an accuracy that approaches the typical experimental uncertainty. Moreover, methods that include the full solid-phase structure enable geometry optimizations to be performed on the input structures prior to calculation of the shielding. Improvement after optimization is noted here even when neutron diffraction data are used for determining the initial structures. After geometry optimization, the isotropic shift can be predicted to within 1 ppm.

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Measurement and calculation of 13C chemical shift tensors in α-glucose and α-glucose monohydrate

TL;DR: In this paper, the 13C chemical shift tensors of two crystalline forms of glucose (α-glucose and αglucoses·H2O) were determined from one-dimensional and two-dimensional solid-state nuclear magnetic reso...
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Carbon-13 chemical-shift tensors in indigo: A two-dimensional NMR-ROCSA and DFT Study.

TL;DR: Comparisons of calculations that include the effect of the crystalline lattice with calculations that model indigo as an isolated molecule give an estimate of the intermolecular contribution to the magnetic shielding.
Journal ArticleDOI

Proposal of new QM/MM approach for geometry optimization of periodic molecular crystal: Self-consistent point charge representation for crystalline effect on target QM molecule

TL;DR: In this paper, a QM/MM method was proposed to analytically optimize structure of periodic molecular crystal, where the MM charge distribution was self-consistently determined by the corresponding QM subunit.
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From <i>Operando</i> Raman Mechanochemistry to “NMR Crystallography”: Understanding the Structures and Interconversion of Zn-Terephthalate Networks Using Selective <sup>17</sup>O-Labeling

TL;DR: In this paper , the formation of various zinc terephthalate compounds was rendered possible by using mechanochemistry in combination with operando Raman spectroscopy, allowing the distinction and isolation of three intermediates during the ball-milling synthesis of Zn3(OH)4(BDC).
References
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Journal ArticleDOI

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First principles methods using CASTEP

TL;DR: The CASTEP program as mentioned in this paper is a computer program for first principles electro-Nic structure calculations, and some of its features and capabilities are described and near-future development plans outlined.
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