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Nanoscale Mechanism of Moisture-Induced Swelling in Wood Microfibril Bundles

Publiceringsår

2022

Upphovspersoner

Paajanen, Antti; Zitting, Aleksi; Rautkari, Lauri; Ketoja, Jukka A.; Penttilä, Paavo A.

Abstrakt

<p>Understanding nanoscale moisture interactions is fundamental to most applications of wood, including cellulosic nanomaterials with tailored properties. By combining X-ray scattering experiments with molecular simulations and taking advantage of computed scattering, we studied the moisture-induced changes in cellulose microfibril bundles of softwood secondary cell walls. Our models reproduced the most important experimentally observed changes in diffraction peak locations and widths and gave new insights into their interpretation. We found that changes in the packing of microfibrils dominate at moisture contents above 10-15%, whereas deformations in cellulose crystallites take place closer to the dry state. Fibrillar aggregation is a significant source of drying-related changes in the interior of the microfibrils. Our results corroborate the fundamental role of nanoscale phenomena in the swelling behavior and properties of wood-based materials and promote their utilization in nanomaterials development. Simulation-assisted scattering analysis proved an efficient tool for advancing the nanoscale characterization of cellulosic materials.</p>
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Organisationer och upphovspersoner

Aalto-universitetet

Zitting Aleksi Orcid -palvelun logo

Rautkari Lauri Orcid -palvelun logo

Penttilä Paavo Orcid -palvelun logo

Teknologiska forskningscentralen VTT Ab

Paajanen Antti Orcid -palvelun logo

Ketoja Jukka A. Orcid -palvelun logo

Publikationstyp

Publikationsform

Artikel

Moderpublikationens typ

Tidning

Artikelstyp

En originalartikel

Målgrupp

Vetenskaplig

Kollegialt utvärderad

Kollegialt utvärderad

UKM:s publikationstyp

A1 Originalartikel i en vetenskaplig tidskrift

Publikationskanalens uppgifter

Volym

22

Nummer

13

Sidor

5143-5150

Publikationsforum

63709

Publikationsforumsnivå

3

Öppen tillgång

Öppen tillgänglighet i förläggarens tjänst

Ja

Öppen tillgång till publikationskanalen

Delvis öppen publikationskanal

Parallellsparad

Ja

Övriga uppgifter

Vetenskapsområden

Kemi; Materialteknik; Medicinsk teknik; Nanoteknologi

Nyckelord

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Förlagets internationalitet

Internationell

Språk

engelska

Internationell sampublikation

Nej

Sampublikation med ett företag

Nej

DOI

10.1021/acs.nanolett.2c00822

Publikationen ingår i undervisnings- och kulturministeriets datainsamling

Ja