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Sökning: id:"swepub:oai:DiVA.org:kth-328809" > Unexpected Gelation...

Unexpected Gelation Behavior of Cellulose Nanofibers Dispersed in Glycols

Wang, R. (författare)
He, H. (författare)
Sharma, P. R. (författare)
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Tian, J. (författare)
Söderberg, L. Daniel (författare)
KTH,Wallenberg Wood Science Center,Fiber- och polymerteknologi
Rosén, Tomas, 1985- (författare)
KTH,Fiber- och polymerteknologi,Wallenberg Wood Science Center
Hsiao, B. S. (författare)
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 (creator_code:org_t)
2022-10-17
2022
Engelska.
Ingår i: Macromolecules. - : American Chemical Society. - 0024-9297 .- 1520-5835. ; 55:21, s. 9527-9536
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • In this study, the gelation behavior of TEMPO-oxidized wood-based cellulose nanofiber (CNF) suspensions in two different glycols, ethylene glycol (EG) and propylene glycol (PG), was investigated near the overlap concentration and compared with that of aqueous CNF suspensions. The flow property of these non-aqueous and aqueous CNF suspensions was characterized by rheological, UV-vis, and rheo-optical techniques. It was found that the CNF(PG) suspensions exhibited stirring-reversible gelation behavior, where gelation could be induced simply by resting (i.e., prolonged holding time). However, this behavior was not observed for CNF(EG) and CNF(aq) suspensions. Higher temperature and higher CNF concentration could accelerate the gelation process of CNFs in PG, but no large-scale phase separation was detected by the optical techniques. Our study suggests that the reduced hydrophilic attraction between CNFs in PG is the main driving force for forming CNF-rich micro-domains, yielding a physically crosslinked network. This study suggests that the choice of solvent can be used to tailor and control the flow behavior of CNF suspensions, leading to designs of new cellulose-enabled nanocomposites for varying applications. 

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Industriell bioteknik -- Biomaterial (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Industrial Biotechnology -- Bio Materials (hsv//eng)

Nyckelord

Behavior
Cellulose
Dispersions
Ethylene Glycol
Gelation
Glycols
Polyols
Wood
Nanocellulose
Nanofibers
Phase separation
Suspensions (fluids)
Cellulose nanofibers
Flow properties
Gelation behavior
Highest temperature
Holding time
Non-aqueous
Optical technique
Overlap concentration
Propylene glycols
Rheo-optical
Ethylene

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