Characterization of Wood Derived Hierarchical Cellulose Scaffolds for Multifunctional Applications

Functional materials of high porosity and hierarchical structure, based on renewable building blocks, are highly demanded for material applications. In this regard, substantial progress has been made by functionalizing micro- and nano-sized cellulose followed by its reassembly via bottom-up approach...

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Main Authors: Jana S. Segmehl, Vanessa Studer, Tobias Keplinger, Ingo Burgert
Format: Article
Language:English
Published: MDPI AG 2018-03-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/11/4/517
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spelling doaj-ea1950ea51e247c18f21bfaf7fe571012020-11-25T01:09:20ZengMDPI AGMaterials1996-19442018-03-0111451710.3390/ma11040517ma11040517Characterization of Wood Derived Hierarchical Cellulose Scaffolds for Multifunctional ApplicationsJana S. Segmehl0Vanessa Studer1Tobias Keplinger2Ingo Burgert3Wood Materials Science, Institute for Building Materials (IfB), ETH Zürich, Stefano Franscini-Platz 3, 8093 Zürich, SwitzerlandWood Materials Science, Institute for Building Materials (IfB), ETH Zürich, Stefano Franscini-Platz 3, 8093 Zürich, SwitzerlandWood Materials Science, Institute for Building Materials (IfB), ETH Zürich, Stefano Franscini-Platz 3, 8093 Zürich, SwitzerlandWood Materials Science, Institute for Building Materials (IfB), ETH Zürich, Stefano Franscini-Platz 3, 8093 Zürich, SwitzerlandFunctional materials of high porosity and hierarchical structure, based on renewable building blocks, are highly demanded for material applications. In this regard, substantial progress has been made by functionalizing micro- and nano-sized cellulose followed by its reassembly via bottom-up approaches. However, bottom-up assembly processes are still limited in terms of upscaling and the utilization of these building blocks presupposes the disassembly of the plant feedstock inherit hierarchical cellulose scaffold. To maintain the three-dimensional structure, delignification processes from pulp and paper production were recently adapted for the treatment of bulk wood. Yet, a detailed chemical analysis and the determination of macroscopic swelling/shrinkage parameters for the scaffolds, necessary for a systematic design of cellulose scaffold based materials, are still missing. Here, acidic bleaching and soda pulping were used for producing cellulose scaffolds, for functional materials under retention of their inherent hierarchical structure. Spatially resolved chemical investigations on thin sections by Raman microscopy provided detailed information on the induced alterations at the cell wall level, revealing significant differences in dependence of the chemistry of the pre-treatment. An adaption to bulk wood samples proved the applicability of these treatments at larger scales and volumetric alterations at different atmospheric conditions indicated the effect of the altered porosity of the scaffolds on their hygroscopic behaviour.http://www.mdpi.com/1996-1944/11/4/517wood-based cellulose scaffoldsdelignificationacidic bleachingsoda pulpingRaman spectroscopy imaginghygroscopic behaviour
collection DOAJ
language English
format Article
sources DOAJ
author Jana S. Segmehl
Vanessa Studer
Tobias Keplinger
Ingo Burgert
spellingShingle Jana S. Segmehl
Vanessa Studer
Tobias Keplinger
Ingo Burgert
Characterization of Wood Derived Hierarchical Cellulose Scaffolds for Multifunctional Applications
Materials
wood-based cellulose scaffolds
delignification
acidic bleaching
soda pulping
Raman spectroscopy imaging
hygroscopic behaviour
author_facet Jana S. Segmehl
Vanessa Studer
Tobias Keplinger
Ingo Burgert
author_sort Jana S. Segmehl
title Characterization of Wood Derived Hierarchical Cellulose Scaffolds for Multifunctional Applications
title_short Characterization of Wood Derived Hierarchical Cellulose Scaffolds for Multifunctional Applications
title_full Characterization of Wood Derived Hierarchical Cellulose Scaffolds for Multifunctional Applications
title_fullStr Characterization of Wood Derived Hierarchical Cellulose Scaffolds for Multifunctional Applications
title_full_unstemmed Characterization of Wood Derived Hierarchical Cellulose Scaffolds for Multifunctional Applications
title_sort characterization of wood derived hierarchical cellulose scaffolds for multifunctional applications
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2018-03-01
description Functional materials of high porosity and hierarchical structure, based on renewable building blocks, are highly demanded for material applications. In this regard, substantial progress has been made by functionalizing micro- and nano-sized cellulose followed by its reassembly via bottom-up approaches. However, bottom-up assembly processes are still limited in terms of upscaling and the utilization of these building blocks presupposes the disassembly of the plant feedstock inherit hierarchical cellulose scaffold. To maintain the three-dimensional structure, delignification processes from pulp and paper production were recently adapted for the treatment of bulk wood. Yet, a detailed chemical analysis and the determination of macroscopic swelling/shrinkage parameters for the scaffolds, necessary for a systematic design of cellulose scaffold based materials, are still missing. Here, acidic bleaching and soda pulping were used for producing cellulose scaffolds, for functional materials under retention of their inherent hierarchical structure. Spatially resolved chemical investigations on thin sections by Raman microscopy provided detailed information on the induced alterations at the cell wall level, revealing significant differences in dependence of the chemistry of the pre-treatment. An adaption to bulk wood samples proved the applicability of these treatments at larger scales and volumetric alterations at different atmospheric conditions indicated the effect of the altered porosity of the scaffolds on their hygroscopic behaviour.
topic wood-based cellulose scaffolds
delignification
acidic bleaching
soda pulping
Raman spectroscopy imaging
hygroscopic behaviour
url http://www.mdpi.com/1996-1944/11/4/517
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AT tobiaskeplinger characterizationofwoodderivedhierarchicalcellulosescaffoldsformultifunctionalapplications
AT ingoburgert characterizationofwoodderivedhierarchicalcellulosescaffoldsformultifunctionalapplications
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