Review of industrial-grade cellulosic nanomaterial composites
Author:
Affiliation:
1. U.S. Department of Agriculture
2. U.S. Forest Service
3. Forest Products Laboratory
Publisher
U.S. Department of Agriculture, Forest Service, Forest Products Laboratory
Reference83 articles.
1. Abraham, E.; Elbi, P.A.; Deepa, B.; Jyotishkumar, P.; Pothen, L.A.; Narine, S.S.; Thomas, S. 2012. X-ray diffraction and biodegradation analysis of green composites of natural rubber/nanocellulose. Polymer Degradation and Stability. 97(11): 2378-2387. https://doi.org/10.1016/j.polymdegradstab.2012.07.028.
2. Amin, K.N.M.; Amiralian, N.; Annamalai, P.K.; Edwards, G.; Chaleat, C.; Martin, D.J. 2016. Scalable processing of thermoplastic polyurethane nanocomposites toughened with nanocellulose. Chemical Engineering Journal. 302: 406-416. https://doi.org/10.1016/j.cej.2016.05.067.
3. Annamalai, P.K.; Dagnon, K.L.; Monemian, S.; Foster, E.J.; Rowan, S.J.; Weder, C. 2014. Water-responsive mechanically adaptive nanocomposites based on styrene-butadiene rubber and cellulose nanocrystals-processing matters. ACS Applied Materials and Interfaces. 6(2): 967-976. https://doi.org/10.1021/am404382x.
4. Arias, A.; Heuzey, M.C.; Huneault, M.A.; Ausias, G.; Bendahou, A. 2015. Enhanced dispersion of cellulose nanocrystals in melt-processed polylactide-based nanocomposites. Cellulose. 22(1): 483-498. https://doi.org/10.1007/s10570-014-0476-z.
5. Asadi, A.; Miller, M.; Moon, R.J.; Kalaitzidou, K. 2016. Improving the interfacial and mechanical properties of short glass fiber/epoxy composites by coating the glass fibers with cellulose nanocrystals. Express Polymer Letters. 10(7): 587-597. https://doi.org/10.3144/expresspolymlett.2016.54.
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