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Production of nanocellulose gels and films from invasive tree species.
Int J Biol Macromol. 2021 Oct 1;188:1003-1011. doi: 10.1016/j.ijbiomac.2021.08.015. Epub 2021 Aug 8.
Int J Biol Macromol. 2021.
PMID: 34371043
Additionally, the surfaces of the obtained nanocelluloses showed a dispersive component of the surface energy near 40 mJ/m(2) and a prevalence of the Lewis acidic character over the basic one, as typical for cellulose-based materials. ...The water vapor barrier, however, w …
Additionally, the surfaces of the obtained nanocelluloses showed a dispersive component of the surface energy near 40 mJ/m(2) and a p …
Effect of cationization pretreatment on the properties of cationic Eucalyptus micro/nanofibrillated cellulose.
Pedrosa JFS, Rasteiro MG, Neto CP, Ferreira PJT.
Pedrosa JFS, et al.
Int J Biol Macromol. 2022 Mar 15;201:468-479. doi: 10.1016/j.ijbiomac.2022.01.068. Epub 2022 Jan 17.
Int J Biol Macromol. 2022.
PMID: 35051499
Free article.
Micro/nanofibrillated celluloses (M/NFCs) have attracted considerable research interest over the past few decades, with various pretreatments being used to reduce energy consumption and/or increase fibrillation. ...
Micro/nanofibrillated celluloses (M/NFCs) have attracted considerable research interest over the past few decades, with various pretr …
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Unique Combination of Surface Energy and Lewis Acid-Base Characteristics of Superhydrophobic Cellulose Fibers.
Gamelas JA, Salvador A, Hidalgo J, Ferreira PJ, Tejado A.
Gamelas JA, et al.
Langmuir. 2017 Jan 31;33(4):927-935. doi: 10.1021/acs.langmuir.6b03970. Epub 2017 Jan 23.
Langmuir. 2017.
PMID: 28033707
A very surprising combination of results was obtained: (i) the dispersive component of the surface energy was found to decrease from 42 to 14 mJ m(-2) (at 40 C), the latter figure representing one of the lowest values ever reported (by IGC) for cellulose-based materials, a …
A very surprising combination of results was obtained: (i) the dispersive component of the surface energy was found to decrease from 42 to 1 …
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On the morphology of cellulose nanofibrils obtained by TEMPO-mediated oxidation and mechanical treatment.
Gamelas JA, Pedrosa J, Lourenço AF, Mutjé P, González I, Chinga-Carrasco G, Singh G, Ferreira PJ.
Gamelas JA, et al.
Micron. 2015 May;72:28-33. doi: 10.1016/j.micron.2015.02.003. Epub 2015 Feb 19.
Micron. 2015.
PMID: 25768897
Free article.
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