Physicochemical characterisation of fluorohectorite: Water dynamics and nanocarrier properties

Larsen, Simon R., Michels, Leander, dos Santos, Éverton C., Berg, Marcella C., Gates, Will P., Aldridge, Laurie P., Seydel, Tilo, Ollivier, Jacques, Telling, Mark T. F., Fossum, Jon Otto and Bordallo, Heloisa N. 2020, Physicochemical characterisation of fluorohectorite: Water dynamics and nanocarrier properties, Microporous and Mesoporous Materials, vol. 306, doi: 10.1016/j.micromeso.2020.110512.

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Title Physicochemical characterisation of fluorohectorite: Water dynamics and nanocarrier properties
Author(s) Larsen, Simon R.
Michels, Leander
dos Santos, Éverton C.
Berg, Marcella C.
Gates, Will P.ORCID iD for Gates, Will P.
Aldridge, Laurie P.
Seydel, Tilo
Ollivier, Jacques
Telling, Mark T. F.
Fossum, Jon Otto
Bordallo, Heloisa N.
Journal name Microporous and Mesoporous Materials
Volume number 306
Article ID 110512
Total pages 11
Publisher Elsevier
Place of publication Amsterdam, Netherlands
Publication date 2020-10-15
ISSN 1387-1811
Keyword(s) clay mineral
neutron spectroscopy
water mobility
decomposition kinetics
Language eng
DOI 10.1016/j.micromeso.2020.110512
Indigenous content off
Field of Research 091202 Composite and Hybrid Materials
03 Chemical Sciences
09 Engineering
Socio Economic Objective 861003 Clay Products
HERDC Research category C1 Refereed article in a scholarly journal
Grant ID Research Council of Norway (RCN — project 228551/RTS)
Niels Bohr Institute, the European Spallation Neutron Source and the Danish Agency for Science, Technology and Innovation through DANSCATT
Carlsbergfond (grant Ref: 2013-01-0589)
CoNext project and the financial supported offered by the ILL
MAX4ESSFUN of the European Regional Development Fund Interreg Oresund-Kattegat-Skagerrak (projects KU-019 and KU-025)
Copyright notice ©2020, Elsevier
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Document type: Journal Article
Collections: Institute for Frontier Materials
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