Issue 6, 2022

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

Abstract

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.

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

Supplementary files

Article information

Article type
Paper
Submitted
17 Sep 2021
Accepted
02 Feb 2022
First published
04 Feb 2022
This article is Open Access
Creative Commons BY license

Nanoscale Adv., 2022,4, 1587-1598

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

O. Darouich, W. Baaziz, D. Ihiawakrim, C. Hirlimann, D. Spehner, P. Schultz, H. Poncet, V. Rouchon, S. Labidi, C. Petit, P. Levitz and O. Ersen, Nanoscale Adv., 2022, 4, 1587 DOI: 10.1039/D1NA00691F

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