Skip to main content
Erschienen in: Cellulose 7/2018

25.05.2018 | Original Paper

Morphology of the nanocellulose produced by periodate oxidation and reductive treatment of cellulose fibers

Erschienen in: Cellulose | Ausgabe 7/2018

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Nanocellulose with a morphology ranging from long flexible to rod-like fibrils were produced via periodate oxidation route followed by reductive treatment with NaBH4 of never-dried eucalyptus pulp. The effect of the aldehyde content on the size and morphology of the resulting nanocellulose was studied by preparing three samples with 450, 830 and 1480 µmol g−1 aldehyde content. The change in particle size after the oxidation and reduction was monitored by dynamic light scattering and the morphology of the nanocellulose was characterized by transmission electron microscopy. It was shown that the length of the cellulose fibrils significantly decreased with increasing oxidation. Depending on the aldehyde content, elementary nanofibrils or bundles of nanofibrils with a length from 100 nm up to several µm were obtained after the reduction process. The reinforcing potential of the nanocellulose was also investigated by dynamic thermomechanical analysis of nanocomposite films with different nanocellulose contents.

Graphical Abstract

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Alexandrescu L, Syverud K, Gatti A, Chinga-Carrasco G (2013) Cytotoxicity tests of cellulose nanofibril-based structures. Cellulose 20:1765–1775CrossRef Alexandrescu L, Syverud K, Gatti A, Chinga-Carrasco G (2013) Cytotoxicity tests of cellulose nanofibril-based structures. Cellulose 20:1765–1775CrossRef
Zurück zum Zitat Besbes I, Alila S, Boufi S (2011) Nanofibrillated cellulose from TEMPO-oxidized eucalyptus fibres: effect of the carboxyl content. Carbohydr Polym 84:975–983CrossRef Besbes I, Alila S, Boufi S (2011) Nanofibrillated cellulose from TEMPO-oxidized eucalyptus fibres: effect of the carboxyl content. Carbohydr Polym 84:975–983CrossRef
Zurück zum Zitat Calvini P, Conio G, Lorenzoni M, Pedemonte E (2004) Viscometric determination of dialdehyde content in periodate oxycellulose. Part I. Methodology. Cellulose 11:99–107CrossRef Calvini P, Conio G, Lorenzoni M, Pedemonte E (2004) Viscometric determination of dialdehyde content in periodate oxycellulose. Part I. Methodology. Cellulose 11:99–107CrossRef
Zurück zum Zitat Chavan VB, Sarwade BD, Varma AJ (2002) Morphology of cellulose and oxidised cellulose in powder form. Carbohydr Polym 50:41–45CrossRef Chavan VB, Sarwade BD, Varma AJ (2002) Morphology of cellulose and oxidised cellulose in powder form. Carbohydr Polym 50:41–45CrossRef
Zurück zum Zitat Chen D, van de Ven TGM (2016) Morphological changes of sterically stabilized nanocrystalline cellulose after periodate oxidation. Cellulose 23:1051–1059CrossRef Chen D, van de Ven TGM (2016) Morphological changes of sterically stabilized nanocrystalline cellulose after periodate oxidation. Cellulose 23:1051–1059CrossRef
Zurück zum Zitat Guigo N, Mazeau K, Putaux J-L, Heux L (2014) Surface modification of cellulose microfibrils by periodate oxidation and subsequent reductive amination with benzylamine: a topochemical study. Cellulose 21:4119–4133CrossRef Guigo N, Mazeau K, Putaux J-L, Heux L (2014) Surface modification of cellulose microfibrils by periodate oxidation and subsequent reductive amination with benzylamine: a topochemical study. Cellulose 21:4119–4133CrossRef
Zurück zum Zitat Hietala M, Ammälä A, Silvennoinen J, Liimatainen H (2016) Fluting medium strengthened by periodate–chlorite oxidized nanofibrillated celluloses. Cellulose 23:427–437CrossRef Hietala M, Ammälä A, Silvennoinen J, Liimatainen H (2016) Fluting medium strengthened by periodate–chlorite oxidized nanofibrillated celluloses. Cellulose 23:427–437CrossRef
Zurück zum Zitat Kargarzadeh H, Ahmad I, Abdullah I, Dufresne A, Zainudin SY, Sheltami RM (2012) Effects of hydrolysis conditions on the morphology, crystallinity, and thermal stability of cellulose nanocrystals extracted from kenaf bast fibers. Cellulose 19:855–866CrossRef Kargarzadeh H, Ahmad I, Abdullah I, Dufresne A, Zainudin SY, Sheltami RM (2012) Effects of hydrolysis conditions on the morphology, crystallinity, and thermal stability of cellulose nanocrystals extracted from kenaf bast fibers. Cellulose 19:855–866CrossRef
Zurück zum Zitat Kim UJ, Kuga S, Wada M, Okano T, Kondo T (2000) Periodate oxidation of crystalline cellulose. Biomacromolecules 1:488–492CrossRefPubMed Kim UJ, Kuga S, Wada M, Okano T, Kondo T (2000) Periodate oxidation of crystalline cellulose. Biomacromolecules 1:488–492CrossRefPubMed
Zurück zum Zitat Larsson PA, Berglund LA, Wågberg L (2014) Ductile all-cellulose nanocomposite films fabricated from core–shell structured cellulose nanofibrils. Biomacromolecules 15:2218–2223CrossRefPubMed Larsson PA, Berglund LA, Wågberg L (2014) Ductile all-cellulose nanocomposite films fabricated from core–shell structured cellulose nanofibrils. Biomacromolecules 15:2218–2223CrossRefPubMed
Zurück zum Zitat Liimatainen H, Visanko M, Sirviö JA, Hormi O, Niinimäki J (2012) Enhancement of the nanofibrillation of wood cellulose through sequential periodate–chlorite oxidation. Biomacromolecules 13:1592–1597CrossRefPubMed Liimatainen H, Visanko M, Sirviö JA, Hormi O, Niinimäki J (2012) Enhancement of the nanofibrillation of wood cellulose through sequential periodate–chlorite oxidation. Biomacromolecules 13:1592–1597CrossRefPubMed
Zurück zum Zitat Liimatainen H, Visanko M, Sirviö JA, Hormi O, Niinimäki J (2013) Sulfonated cellulose nanofibrils obtained from wood pulp through regioselective oxidative bisulfite pre-treatment. Cellulose 20:741–749CrossRef Liimatainen H, Visanko M, Sirviö JA, Hormi O, Niinimäki J (2013) Sulfonated cellulose nanofibrils obtained from wood pulp through regioselective oxidative bisulfite pre-treatment. Cellulose 20:741–749CrossRef
Zurück zum Zitat Lin N, Dufresne A (2012) Preparation, properties and applications of polysaccharide nanocrystals in advanced functional nanomaterials: a review. Nanoscale 4(11):3274–3294CrossRefPubMed Lin N, Dufresne A (2012) Preparation, properties and applications of polysaccharide nanocrystals in advanced functional nanomaterials: a review. Nanoscale 4(11):3274–3294CrossRefPubMed
Zurück zum Zitat Lin N, Dufresne A (2014) Nanocellulose in biomedicine: current status and future prospect. Eur Polym J59:302–325CrossRef Lin N, Dufresne A (2014) Nanocellulose in biomedicine: current status and future prospect. Eur Polym J59:302–325CrossRef
Zurück zum Zitat Lu F-F, Yu H-Y, Zhou Y, Yao J-M (2016) Spherical and rod-like dialdehyde cellulose nanocrystals by sodium periodate oxidation: optimization with double response surface model and templates for silver nanoparticles. Express Polym Lett 10:965–976CrossRef Lu F-F, Yu H-Y, Zhou Y, Yao J-M (2016) Spherical and rod-like dialdehyde cellulose nanocrystals by sodium periodate oxidation: optimization with double response surface model and templates for silver nanoparticles. Express Polym Lett 10:965–976CrossRef
Zurück zum Zitat Mahfoudhi N, Boufi S (2017) Nanocellulose as a novel nanostructured adsorbent for environmental remediation: a review. Cellulose 24:1171–1197CrossRef Mahfoudhi N, Boufi S (2017) Nanocellulose as a novel nanostructured adsorbent for environmental remediation: a review. Cellulose 24:1171–1197CrossRef
Zurück zum Zitat Nechyporchuk O, Belgacem MN, Bras J (2016) Production of cellulose nanofibrils: a review of recent advances. Ind Crops Prod 93:2–25CrossRef Nechyporchuk O, Belgacem MN, Bras J (2016) Production of cellulose nanofibrils: a review of recent advances. Ind Crops Prod 93:2–25CrossRef
Zurück zum Zitat Nieduszynski I, Preston RD (1970) Crystallite size in natural cellulose. Nature 225:273–274CrossRef Nieduszynski I, Preston RD (1970) Crystallite size in natural cellulose. Nature 225:273–274CrossRef
Zurück zum Zitat Princi VE, Luciano G, Franceschi E, Pedemonte E, Oldak D, Kaczmarek H, Sionkowska A (2004) Thermal analysis and characterisation of cellulose oxidised with sodium methaperiodate. Thermochim Acta 418:123–130CrossRef Princi VE, Luciano G, Franceschi E, Pedemonte E, Oldak D, Kaczmarek H, Sionkowska A (2004) Thermal analysis and characterisation of cellulose oxidised with sodium methaperiodate. Thermochim Acta 418:123–130CrossRef
Zurück zum Zitat Ranby BG (1951) The colloidal properties of cellulose micelles. Discuss Faraday Soc 11:158–164CrossRef Ranby BG (1951) The colloidal properties of cellulose micelles. Discuss Faraday Soc 11:158–164CrossRef
Zurück zum Zitat Segal L, Creely JJ, Martin AE, Conrad CM (1959) An empirical method for estimating the degree of crystallinity of native cellulose using the X-ray diffractometer. Text Res J 29:786–794CrossRef Segal L, Creely JJ, Martin AE, Conrad CM (1959) An empirical method for estimating the degree of crystallinity of native cellulose using the X-ray diffractometer. Text Res J 29:786–794CrossRef
Zurück zum Zitat Sirviö JA, Visanko M, Laitinen O, Ämmälä A, Liimatainen H (2016) Amino-modified cellulose nanocrystals with adjustablehydrophobicity from combined regioselective oxidation and reductive amination. Carbohydr Polym 136:581–587CrossRefPubMed Sirviö JA, Visanko M, Laitinen O, Ämmälä A, Liimatainen H (2016) Amino-modified cellulose nanocrystals with adjustablehydrophobicity from combined regioselective oxidation and reductive amination. Carbohydr Polym 136:581–587CrossRefPubMed
Zurück zum Zitat van de Ven TGM, Sheikhi A (2016) Hairy cellulose nanocrystalloids: a novel class of nanocellulose. Nanoscale 8:15101–15114CrossRefPubMed van de Ven TGM, Sheikhi A (2016) Hairy cellulose nanocrystalloids: a novel class of nanocellulose. Nanoscale 8:15101–15114CrossRefPubMed
Zurück zum Zitat Vikman M, Vartiainen J, Tsitko I, Korhonen P (2015) Biodegradability and compostability of nanofibrillar cellulose-based products. J Polym Environ 23:206–215CrossRef Vikman M, Vartiainen J, Tsitko I, Korhonen P (2015) Biodegradability and compostability of nanofibrillar cellulose-based products. J Polym Environ 23:206–215CrossRef
Zurück zum Zitat Visanko M, Liimatainen H, Antti Sirvio J, Mikkonen KS, Tenkanen M, Sliz R, Hormie O, Niinimaki J (2015) Butylamino-functionalized cellulose nanocrystal films: barrier properties and mechanical strength. RSC Adv 5:15140–15146CrossRef Visanko M, Liimatainen H, Antti Sirvio J, Mikkonen KS, Tenkanen M, Sliz R, Hormie O, Niinimaki J (2015) Butylamino-functionalized cellulose nanocrystal films: barrier properties and mechanical strength. RSC Adv 5:15140–15146CrossRef
Zurück zum Zitat Yang H, Tejado A, Alam MN, Antal M, van de Ven TGM (2012) Films prepared fromelectrosterically stabilized nanocrystalline cellulose. Langmuir 28:7834–7842CrossRefPubMed Yang H, Tejado A, Alam MN, Antal M, van de Ven TGM (2012) Films prepared fromelectrosterically stabilized nanocrystalline cellulose. Langmuir 28:7834–7842CrossRefPubMed
Metadaten
Titel
Morphology of the nanocellulose produced by periodate oxidation and reductive treatment of cellulose fibers
Publikationsdatum
25.05.2018
Erschienen in
Cellulose / Ausgabe 7/2018
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-018-1871-7

Weitere Artikel der Ausgabe 7/2018

Cellulose 7/2018 Zur Ausgabe