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3D multiscale analysis of the hierarchical porosity in Coscinodiscus sp. diatoms using a combination of tomographic techniques

A full 3D analysis of the hierarchical porosity in Coscinodiscus sp. diatom structures was carried out by using a multiscale approach that combines three advanced volumetric imaging techniques with resolutions and fields of view covering all the porous characteristics of such complex architectures:...

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Autores principales: Darouich, Othmane, Baaziz, Walid, Ihiawakrim, Dris, Hirlimann, Charles, Spehner, Danièle, Schultz, Patrick, Poncet, Hedwige, Rouchon, Virgile, Labidi, Sana, Petit, Corinne, Levitz, Pierre, Ersen, Ovidiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9418519/
https://www.ncbi.nlm.nih.gov/pubmed/36134372
http://dx.doi.org/10.1039/d1na00691f
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author Darouich, Othmane
Baaziz, Walid
Ihiawakrim, Dris
Hirlimann, Charles
Spehner, Danièle
Schultz, Patrick
Poncet, Hedwige
Rouchon, Virgile
Labidi, Sana
Petit, Corinne
Levitz, Pierre
Ersen, Ovidiu
author_facet Darouich, Othmane
Baaziz, Walid
Ihiawakrim, Dris
Hirlimann, Charles
Spehner, Danièle
Schultz, Patrick
Poncet, Hedwige
Rouchon, Virgile
Labidi, Sana
Petit, Corinne
Levitz, Pierre
Ersen, Ovidiu
author_sort Darouich, Othmane
collection PubMed
description A full 3D analysis of the hierarchical porosity in Coscinodiscus sp. diatom structures was carried out by using a multiscale approach that combines three advanced volumetric imaging techniques with resolutions and fields of view covering all the porous characteristics of such complex architectures: electron tomography, “slice and view” approach that uses a dual-beam microscope (FIB-SEM), and array tomography consisting of serial imaging of ultrathin specimen sections. This multiscale approach allowed the whole porosity network to be quantified and provided an unprecedented structural insight into these natural nanostructured materials with internal organization ranging from micrometer to nanometer. The analysed species is made of several nested layers with different pore sizes, shapes and connectivities and characterized by the presence of interconnected pores structured in various ways. The first evidence of the presence of a nanometric porosity made of ellipsoidal pores in the siliceous diatom frustules is also provided.
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spelling pubmed-94185192022-09-20 3D multiscale analysis of the hierarchical porosity in Coscinodiscus sp. diatoms using a combination of tomographic techniques Darouich, Othmane Baaziz, Walid Ihiawakrim, Dris Hirlimann, Charles Spehner, Danièle Schultz, Patrick Poncet, Hedwige Rouchon, Virgile Labidi, Sana Petit, Corinne Levitz, Pierre Ersen, Ovidiu Nanoscale Adv Chemistry A full 3D analysis of the hierarchical porosity in Coscinodiscus sp. diatom structures was carried out by using a multiscale approach that combines three advanced volumetric imaging techniques with resolutions and fields of view covering all the porous characteristics of such complex architectures: electron tomography, “slice and view” approach that uses a dual-beam microscope (FIB-SEM), and array tomography consisting of serial imaging of ultrathin specimen sections. This multiscale approach allowed the whole porosity network to be quantified and provided an unprecedented structural insight into these natural nanostructured materials with internal organization ranging from micrometer to nanometer. The analysed species is made of several nested layers with different pore sizes, shapes and connectivities and characterized by the presence of interconnected pores structured in various ways. The first evidence of the presence of a nanometric porosity made of ellipsoidal pores in the siliceous diatom frustules is also provided. RSC 2022-02-04 /pmc/articles/PMC9418519/ /pubmed/36134372 http://dx.doi.org/10.1039/d1na00691f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Darouich, Othmane
Baaziz, Walid
Ihiawakrim, Dris
Hirlimann, Charles
Spehner, Danièle
Schultz, Patrick
Poncet, Hedwige
Rouchon, Virgile
Labidi, Sana
Petit, Corinne
Levitz, Pierre
Ersen, Ovidiu
3D multiscale analysis of the hierarchical porosity in Coscinodiscus sp. diatoms using a combination of tomographic techniques
title 3D multiscale analysis of the hierarchical porosity in Coscinodiscus sp. diatoms using a combination of tomographic techniques
title_full 3D multiscale analysis of the hierarchical porosity in Coscinodiscus sp. diatoms using a combination of tomographic techniques
title_fullStr 3D multiscale analysis of the hierarchical porosity in Coscinodiscus sp. diatoms using a combination of tomographic techniques
title_full_unstemmed 3D multiscale analysis of the hierarchical porosity in Coscinodiscus sp. diatoms using a combination of tomographic techniques
title_short 3D multiscale analysis of the hierarchical porosity in Coscinodiscus sp. diatoms using a combination of tomographic techniques
title_sort 3d multiscale analysis of the hierarchical porosity in coscinodiscus sp. diatoms using a combination of tomographic techniques
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9418519/
https://www.ncbi.nlm.nih.gov/pubmed/36134372
http://dx.doi.org/10.1039/d1na00691f
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