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Refinement of anomalous dispersion correction parameters in single-crystal structure determinations

Correcting for anomalous dispersion is part of any refinement of an X-ray dif­fraction crystal structure determination. The procedure takes the inelastic scattering in the diffraction experiment into account. This X-ray absorption effect is specific to each chemical compound and is particularly sens...

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Autores principales: Meurer, Florian, Dolomanov, Oleg V., Hennig, Christoph, Peyerimhoff, Norbert, Kleemiss, Florian, Puschmann, Horst, Bodensteiner, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9438505/
https://www.ncbi.nlm.nih.gov/pubmed/36071807
http://dx.doi.org/10.1107/S2052252522006844
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author Meurer, Florian
Dolomanov, Oleg V.
Hennig, Christoph
Peyerimhoff, Norbert
Kleemiss, Florian
Puschmann, Horst
Bodensteiner, Michael
author_facet Meurer, Florian
Dolomanov, Oleg V.
Hennig, Christoph
Peyerimhoff, Norbert
Kleemiss, Florian
Puschmann, Horst
Bodensteiner, Michael
author_sort Meurer, Florian
collection PubMed
description Correcting for anomalous dispersion is part of any refinement of an X-ray dif­fraction crystal structure determination. The procedure takes the inelastic scattering in the diffraction experiment into account. This X-ray absorption effect is specific to each chemical compound and is particularly sensitive to radiation energies in the region of the absorption edges of the elements in the compound. Therefore, the widely used tabulated values for these corrections can only be approximations as they are based on calculations for isolated atoms. Features of the unique spatial and electronic environment that are directly related to the anomalous dispersion are ignored, although these can be observed spectroscopically. This significantly affects the fit between the crystallographic model and the measured intensities when the excitation wavelength in an X-ray diffraction experiment is close to an element’s absorption edge. Herein, we report on synchrotron multi-wavelength single-crystal X-ray diffraction, as well as X-ray absorption spectroscopy experiments which we performed on the mol­ecular compound Mo(CO)(6) at energies around the molybdenum K edge. The dispersive (f′) and absorptive (f′′) terms of the anomalous dispersion can be refined as independent parameters in the full-matrix least-squares refinement. This procedure has been implemented as a new feature in the well-established OLEX2 software suite. These refined parameters are in good agreement with the independently recorded X-ray absorption spectrum. The resulting crystallographic models show significant improvement compared to those employing tabulated values.
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spelling pubmed-94385052022-09-06 Refinement of anomalous dispersion correction parameters in single-crystal structure determinations Meurer, Florian Dolomanov, Oleg V. Hennig, Christoph Peyerimhoff, Norbert Kleemiss, Florian Puschmann, Horst Bodensteiner, Michael IUCrJ Research Papers Correcting for anomalous dispersion is part of any refinement of an X-ray dif­fraction crystal structure determination. The procedure takes the inelastic scattering in the diffraction experiment into account. This X-ray absorption effect is specific to each chemical compound and is particularly sensitive to radiation energies in the region of the absorption edges of the elements in the compound. Therefore, the widely used tabulated values for these corrections can only be approximations as they are based on calculations for isolated atoms. Features of the unique spatial and electronic environment that are directly related to the anomalous dispersion are ignored, although these can be observed spectroscopically. This significantly affects the fit between the crystallographic model and the measured intensities when the excitation wavelength in an X-ray diffraction experiment is close to an element’s absorption edge. Herein, we report on synchrotron multi-wavelength single-crystal X-ray diffraction, as well as X-ray absorption spectroscopy experiments which we performed on the mol­ecular compound Mo(CO)(6) at energies around the molybdenum K edge. The dispersive (f′) and absorptive (f′′) terms of the anomalous dispersion can be refined as independent parameters in the full-matrix least-squares refinement. This procedure has been implemented as a new feature in the well-established OLEX2 software suite. These refined parameters are in good agreement with the independently recorded X-ray absorption spectrum. The resulting crystallographic models show significant improvement compared to those employing tabulated values. International Union of Crystallography 2022-07-20 /pmc/articles/PMC9438505/ /pubmed/36071807 http://dx.doi.org/10.1107/S2052252522006844 Text en © Florian Meurer et al. 2022 https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Meurer, Florian
Dolomanov, Oleg V.
Hennig, Christoph
Peyerimhoff, Norbert
Kleemiss, Florian
Puschmann, Horst
Bodensteiner, Michael
Refinement of anomalous dispersion correction parameters in single-crystal structure determinations
title Refinement of anomalous dispersion correction parameters in single-crystal structure determinations
title_full Refinement of anomalous dispersion correction parameters in single-crystal structure determinations
title_fullStr Refinement of anomalous dispersion correction parameters in single-crystal structure determinations
title_full_unstemmed Refinement of anomalous dispersion correction parameters in single-crystal structure determinations
title_short Refinement of anomalous dispersion correction parameters in single-crystal structure determinations
title_sort refinement of anomalous dispersion correction parameters in single-crystal structure determinations
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9438505/
https://www.ncbi.nlm.nih.gov/pubmed/36071807
http://dx.doi.org/10.1107/S2052252522006844
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