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dc.contributor.authorRodriguez-Blanco, Juan
dc.date.accessioned2019-10-18T07:55:43Z
dc.date.available2019-10-18T07:55:43Z
dc.date.issued2016
dc.date.submitted2016en
dc.identifier.citationStawski, T.M., van Driessche, A.E. S., Ossorio, M., Rodriguez-Blanco, J.D., Besselink, R., Benning, L.G., Formation of calcium sulfate through the aggregation of sub-3 nanometre primary species, Nature Communications, 2016, 7, 10177en
dc.identifier.otherY
dc.descriptionPUBLISHEDen
dc.description.abstractThe formation pathways of gypsum remain uncertain. Here, using truly in situ and fast time-resolved small-angle X-ray scattering, we quantify the four-stage solution-based nucleation and growth of gypsum (CaSO4·2H2O), an important mineral phase on Earth and Mars. The reaction starts through the fast formation of well-defined, primary species of <3 nm in length (stage I), followed in stage II by their arrangement into domains. The variations in volume fractions and electron densities suggest that these fast forming primary species contain Ca–SO4-cores that self-assemble in stage III into large aggregates. Within the aggregates these well-defined primary species start to grow (stage IV), and fully crystalize into gypsum through a structural rearrangement. Our results allow for a quantitative understanding of how natural calcium sulfate deposits may form on Earth and how a terrestrially unstable phase-like bassanite can persist at low-water activities currently dominating the surface of Mars.en
dc.format.extent10177en
dc.language.isoenen
dc.relation.ispartofseriesNature Communications;
dc.relation.ispartofseries7;
dc.rightsYen
dc.subjectGypsumen
dc.subjectNatural calcium sulfateen
dc.subjectMarsen
dc.titleFormation of calcium sulfate through the aggregation of sub-3 nanometre primary speciesen
dc.typeJournal Articleen
dc.type.supercollectionscholarly_publicationsen
dc.type.supercollectionrefereed_publicationsen
dc.identifier.peoplefinderurlhttp://people.tcd.ie/rodrigjd
dc.identifier.rssinternalid126618
dc.rights.ecaccessrightsopenAccess
dc.subject.TCDThemeNanoscience & Materialsen
dc.subject.TCDThemeSmart & Sustainable Planeten
dc.identifier.orcid_id0000-0001-5978-3001
dc.identifier.uridoi: 10.1038/ncomms11177
dc.identifier.urihttp://hdl.handle.net/2262/89838


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