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Further Validation of Quantum Crystallography Approaches

Autor
Hoser, Anna
Woźniak, Krzysztof
Malińska, Maura
Wanat, Monika
Data publikacji
2021
Abstrakt (EN)

Quantum crystallography is a fast-developing multidisciplinary area of crystallography. In this work, we analyse the influence of different charge density models (i.e., the multipole model (MM), Hirshfeld atom refinement (HAR), and the transferable aspherical atom model (TAAM)), modelling of the thermal motion of hydrogen atoms (anisotropic, isotropic, and with the aid of SHADE or NoMoRe), and the type of radiation used (Mo Kα and Cu Kα) on the final results. To achieve this aim, we performed a series of refinements against X-ray diffraction data for three model compounds and compared their final structures, geometries, shapes of ADPs, and charge density distributions. Our results were also supported by theoretical calculations that enabled comparisons of the lattice energies of these structures. It appears that geometrical parameters are better described (closer to the neutron values) when HAR is used; however, bonds to H atoms more closely match neutron values after MM or TAAM refinement. Our analysis shows the superiority of the NoMoRe method in the description of H-atom ADPs. Moreover, the shapes of the ADPs of H atoms, as well as their electron density distributions, were better described with low-resolution Cu Kα data in comparison to low-resolution Mo Kα data.

Słowa kluczowe EN
multipole model
normal mode refinement
Hirshfeld atom refinement
transferable aspherical atom model
charge density
Dyscyplina PBN
nauki chemiczne
Czasopismo
Molecules
Tom
26
Zeszyt
12
Strony od-do
3730
ISSN
1420-3049
Data udostępnienia w otwartym dostępie
2021-06-18
Licencja otwartego dostępu
Uznanie autorstwa