Accurate 13-C and 15-N molecular crystal chemical shielding tensors from fragment-based electronic structure theory

被引:21
|
作者
Hartman, Joshua D. [1 ,2 ]
Beran, Gregory J. O. [1 ]
机构
[1] Univ Calif Riverside, Dept Chem, Riverside, CA 92521 USA
[2] Mt San Jacinto Coll, Dept Chem, Menifee, CA 92584 USA
基金
美国国家科学基金会;
关键词
POLYCYCLIC AROMATIC-COMPOUNDS; SHIFT TENSORS; POWDER DIFFRACTION; C-13; DENSITY; APPROXIMATION; INTERMEDIATE; REFINEMENT; PARAMETERS; PROTEIN;
D O I
10.1016/j.ssnmr.2018.09.003
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Standard nuclear magnetic resonance (NMR) spectroscopy experiments measure isotropic chemical shifts, but measuring the chemical shielding anisotropy (CSA) tensor can provide additional insights into solid state chemical structures. Interpreting the principal components of these tensors is facilitated by first-principles chemical shielding tensor predictions. Here, the ability to predict molecular crystal CSA tensor components for C-13 and N-15 nuclei with fragment-based electronic structure techniques is explored. Similar to what has been found previously for isotropic chemical shifts, the benchmarking demonstrates that fragment-based techniques can accurately reproduce CSA tensor components. The use of hybrid density functionals like PBEO or B3LYP provide higher accuracy than generalized gradient approximation functionals like PBE. Unlike for planewave density functional techniques, hybrid density functionals can be employed routinely with modest computational cost in fragment approaches. Finally, good consistency between the regression parameters used to map either isotropic shieldings or CSA tensor components is demonstrated, providing further evidence for the quality of the models and highlighting that models trained for isotropic shifts can also be applied to CSA tensor components.
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页码:10 / 18
页数:9
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