ForMAX – a beamline for multiscale and multimodal structural characterization of hierarchical materials
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Published:2024-02-22
Issue:2
Volume:31
Page:363-377
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ISSN:1600-5775
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Container-title:Journal of Synchrotron Radiation
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language:
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Short-container-title:J Synchrotron Rad
Author:
Nygård K., McDonald S. A., González J. B., Haghighat V., Appel C.ORCID, Larsson E., Ghanbari R., Viljanen M., Silva J., Malki S., Li Y., Silva V., Weninger C.ORCID, Engelmann F.ORCID, Jeppsson T., Felcsuti G., Rosén T., Gordeyeva K., Söderberg L. D., Dierks H., Zhang Y.ORCID, Yao Z.ORCID, Yang R., Asimakopoulou E. M., Rogalinski J. K., Wallentin J.ORCID, Villanueva-Perez P.ORCID, Krüger R.ORCID, Dreier T.ORCID, Bech M.ORCID, Liebi M., Bek M.ORCID, Kádár R.ORCID, Terry A. E., Tarawneh H.ORCID, Ilinski P., Malmqvist J., Cerenius Y.
Abstract
The ForMAX beamline at the MAX IV Laboratory provides multiscale and multimodal structural characterization of hierarchical materials in the nanometre to millimetre range by combining small- and wide-angle X-ray scattering with full-field microtomography. The modular design of the beamline is optimized for easy switching between different experimental modalities. The beamline has a special focus on the development of novel fibrous materials from forest resources, but it is also well suited for studies within, for example, food science and biomedical research.
Funder
Vetenskapsrådet VINNOVA Svenska Forskningsrådet Formas Horizon 2020 Framework Programme H2020 Marie Skłodowska-Curie Actions Stiftelsen för Strategisk Forskning Knut och Alice Wallenbergs Stiftelse Crafoordska Stiftelsen NanoLund, Lunds Universitet
Publisher
International Union of Crystallography (IUCr)
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