Rheological characterization of cellulose nanocrystal-laden self-healable polyvinyl alcohol hydrogels

被引:6
|
作者
Kim, Hyeonjeong [1 ]
Kim, Hyo Jeong [1 ]
Lee, Youngeun [1 ]
Kim, Jin Kyung [1 ]
Eom, Youngho [1 ]
机构
[1] Pukyong Natl Univ, Dept Polymer Engn, Busan 48513, South Korea
关键词
Rheology; Self-healing; Polyvinyl alcohol hydrogel; Cellulose nanocrystal; Nanocomposite; NANOCOMPOSITES; POLYMER; BEHAVIOR;
D O I
10.1007/s13367-023-00049-y
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Among various nanomaterials, cellulose nanocrystals (CNCs) are regarded as the most suitable reinforcing fillers for hydrogels owing to their high dispersibility in water and favorable hydrogen bonding with water-dispersible polymers. Herein, CNC-laden polyvinyl alcohol (PVA)/borax (P/CNC) hydrogels were prepared by solution mixing, and their mechanical and rheological properties were investigated in terms of CNC loading of 0-60 w/w%. PVA/borax hydrogels are known to exhibit self-healing ability based on the dynamic nature of the borate-diol complex, which is dependent on the rheological response because the rheological chain dynamics dominantly affect the self-healing process. In mechanical testing, the Young's modulus of the P/CNC hydrogels sharply increased above 40 w/w% CNC, indicating that the stiffening effect of CNC was enhanced above the critical loading. From a rheological perspective, the increases in the viscosity and storage modulus were further accelerated above 40 w/w%. In particular, the chain flow relaxation time (tau(f)), a quantitative parameter closely related to the self-healing performance, was observed for the P/CNC hydrogels with CNC amounts of 0-40 w/w% (1.6-97.3 s); whereas, there is no tau(f) for the P/CNC hydrogels with 45-60 w/w% CNC within a reasonable time scale we observed at 25 degrees C. Consequently, the incorporation of less than 40 w/w% CNCs affords high mechanical stiffness while maintaining self-healing ability.
引用
收藏
页码:31 / 38
页数:8
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