Preparation and Characterization of Poly(vinyl alcohol) Nanocomposites Made from Cellulose Nanofibers

被引:142
|
作者
Qua, E. H. [1 ]
Hornsby, P. R. [1 ]
Sharma, H. S. S. [2 ]
Lyons, G. [2 ]
McCall, R. D. [2 ]
机构
[1] Queens Univ Belfast, Sch Mech & Aerosp Engn, Belfast BT9 5AH, Antrim, North Ireland
[2] Agri Food & Biosci Inst, Appl Plant Sci Div, Belfast BT9 5PX, Antrim, North Ireland
关键词
mechanical properties; nanocomposites; thermal properties; THERMAL-DEGRADATION; DECOMPOSITION; NANOCRYSTALS; WHISKERS; ACETATE;
D O I
10.1002/app.30116
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
A method using a combination of ball milling, acid hydrolysis, and ultrasound was developed to obtain a high yield of cellulose nanofibers from flax fibers and microcrystalline cellulose (MCC). Polyvinyl alcohol) (PVA) nanocomposites were prepared with these additives by a solution-casting technique. The cellulose nanofibers and nanocomposite films that were produced were characterized with Fourier transform infrared spectrometry, X-ray diffraction, thermogravimetric analysis, scanning electron microscopy, and transmission electron microscopy. Nanofibers derived from MCC were on average approximately 8 nm in diameter and 111 nm in length. The diameter of the cellulose nanofibers produced from flax fibers was approximately 9 nm, and the length was 141 nm. A significant enhancement of the thermal and mechanical properties was achieved with a small addition of cellulose nanofibers to the polymer matrix. Interestingly, the flax nanofibers had the same reinforcing effects as MCC nanofibers in the matrix. Dynamic mechanical analysis results indicated that the use of cellulose nanofibers (acid hydrolysis) induced a mechanical percolation phenomenon leading to outstanding and unusual mechanical properties through the formation of a rigid filler network in the PVA matrix. X-ray diffraction showed that there was no significant change in the crystallinity of the PVA matrix with the incorporation of cellulose nanofibers. (C) 2009 Wiley Periodicals, Inc. J Appl Polym Sci 113: 2238-2247, 2009
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页码:2238 / 2247
页数:10
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