NMR Crystallography: A tool for the characterization of microporous hybrid solids

2018 ◽  
Vol 33 ◽  
pp. 35-43 ◽  
Author(s):  
Charlotte Martineau-Corcos
Author(s):  
Hao-Hong Li ◽  
Min Wang ◽  
Shu-Wei Huang ◽  
Ji-Bo Liu ◽  
Xiao Lin ◽  
...  
Keyword(s):  

2012 ◽  
Vol 2013 (7) ◽  
pp. 1149-1156 ◽  
Author(s):  
Sylvain Duval ◽  
Frédéric Dumur ◽  
Laure Guénée ◽  
Jérôme Marrot ◽  
Corine Simonnet-Jégat ◽  
...  

2017 ◽  
Vol 138 ◽  
pp. 22-28 ◽  
Author(s):  
Xenia Filip ◽  
Maria Miclaus ◽  
Flavia Martin ◽  
Claudiu Filip ◽  
Ioana Georgeta Grosu

2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Chunmei Huang ◽  
Miriding Mutailipu ◽  
Fangfang Zhang ◽  
Kent J. Griffith ◽  
Cong Hu ◽  
...  

AbstractMore than 3900 crystalline borates, including borate minerals and synthetic inorganic borates, in addition to a wealth of industrially-important boron-containing glasses, have been discovered and characterized. Of these compounds, 99.9 % contain only the traditional triangular BO3 and tetrahedral BO4 units, which polymerize into superstructural motifs. Herein, a mixed metal K5Ba2(B10O17)2(BO2) with linear BO2 structural units was obtained, pushing the boundaries of structural diversity and providing a direct strategy toward the maximum thresholds of birefringence for optical materials design. 11B solid-state nuclear magnetic resonance (NMR) is a ubiquitous tool in the study of glasses and optical materials; here, density functional theory-based NMR crystallography guided the direct characterization of BO2 structural units. The full anisotropic shift and quadrupolar tensors of linear BO2 were extracted from K5Ba2(B10O17)2(BO2) containing BO2, BO3, and BO4 and serve as guides to the identification of this powerful moiety in future and, potentially, previously-characterized borate minerals, ceramics, and glasses.


Crystals ◽  
2018 ◽  
Vol 8 (10) ◽  
pp. 378 ◽  
Author(s):  
Jiri Czernek ◽  
Martina Urbanova ◽  
Jiri Brus

Two polymorphs of the drug compound metergoline (C25H29N3O2) were investigated in detail by solid-state NMR measurements. The results have been analysed by an advanced procedure, which uses experimental input together with the results of quantum chemical calculations that were performed for molecular crystals. In this way, it was possible to assign the total of 40 1H–13C correlation pairs in a highly complex system, namely, in the dynamically disordered polymorph with two independent molecules in the unit cell of a large volume of 4234 Å3. For the simpler polymorph, which exhibits only small-amplitude motions and has just one molecule in the unit cell with a volume of 529.0 Å3, the values of the principal elements of the 13C chemical shift tensors were measured. Additionally, for this polymorph, a set of crystal structure predictions were generated, and the {13C, 1H} isotropic and 13C anisotropic chemical shielding data were computed while using the gauge-including projector augmented-wave approach combined with the “revised Perdew-Burke-Ernzerhof“ exchange-correlation functional (GIPAW-RPBE). The experimental and theoretical results were combined in an application of the newly developed strategy to polymorph discrimination. This research thus opens up new routes towards more accurate characterization of the polymorphism of drug formulations.


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