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http://hdl.handle.net/10174/20975
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Title: | Synchrotron-based crystal structure, associated morphology of snail and bivalve shells by X-ray diffraction |
Authors: | schiavon, nicola brunetti, antonio rao, venkateswara |
Keywords: | Synchrotron Diffraction Calcium carbonate shells |
Issue Date: | 2016 |
Publisher: | Elsevier B.V. |
Citation: | Radiation Physics and Chemistry 127, 155-164 |
Abstract: | Synchrotron-basedhigh-resolutionX-raypowderdiffractionspectrafromthebodypartsofasnailand
bivalve(CaCO3), havebeenrecordedwithPilatusareadetector.ExperimentswereperformedatDesy,
Hamburg, Germany,utilizingtheResonantandDiffractionbeamline(P9),with15keVX-rays
(λ¼0.82666Å).Theexternalshelloftheselivingorganisms,iscomposedofcalciumcarbonate,which
carries strongbiologicalsignal.Itconsistsofsomelightelements,suchas,Ca,CandO,whichconstitute
part ofthesofttissueandothertraceelements.Theknowledgeofthesediffractionpatternsandhence
the understandingofstructuresatmolecularlevelareenormous.Theapplicationofsynchrotronra-
diation topowderdiffractioniswellsuitedforsamplesofbiologicalnatureviachangesintheirpatterns
and alsotoinvestigatecrystallographicphasecomposition.WiththeuseofRietveldrefinement proce-
dure, tothehigh-resolutiondiffractionspectra,wewereabletoextractthelatticeparametersofor-
thorhombic polymorphofCaCO3, themostabundantmineralproducedbytheselivingorganisms.The
small sizeofthecrystalliteisaveryimportantfactorrelatedtothebiologicalstructure.Thenatural
model presentsacombinationoforganicandinorganicphaseswithnanometersize.Forthepresent
study,wealsousedthescanningelectronmicroscopy(SEM)toexploretheassociatedmorphologyofthe
snail andbivalve. |
URI: | http://dx.doi.org/10.1016/j.radphyschem.2016.06.024 http://hdl.handle.net/10174/20975 |
Type: | article |
Appears in Collections: | HERCULES - Publicações - Artigos em Revistas Internacionais Com Arbitragem Científica
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