Hossain Kazi M Zakir, Calabrese Vincenzo, da Silva Marcelo A, Bryant Saffron J, Schmitt Julien, Ahn-Jarvis Jennifer H, Warren Frederick J, Khimyak Yaroslav Z, Scott Janet L, Edler Karen J
Department of Chemistry, University of Bath, Claverton Down, Bath BA2 7AY, UK.
Food Innovation and Health, Quadram Institute Bioscience, Norwich Research Park, Norwich NR4 7UQ, UK.
Polymers (Basel). 2021 Mar 19;13(6):951. doi: 10.3390/polym13060951.
Water quality parameters such as salt content and various pH environments can alter the stability of gels as well as their rheological properties. Here, we investigated the effect of various concentrations of NaCl and different pH environments on the rheological properties of TEMPO-oxidised cellulose nanofibril (OCNF) and starch-based hydrogels. Addition of NaCl caused an increased stiffness of the OCNF:starch (1:1 wt%) blend gels, where salt played an important role in reducing the repulsive OCNF fibrillar interactions. The rheological properties of these hydrogels were unchanged at pH 5.0 to 9.0. However, at lower pH (4.0), the stiffness and viscosity of the OCNF and OCNF:starch gels appeared to increase due to proton-induced fibrillar interactions. In contrast, at higher pH (11.5), syneresis was observed due to the formation of denser and aggregated gel networks. Interactions as well as aggregation behaviour of these hydrogels were explored via ζ-potential measurements. Furthermore, the nanostructure of the OCNF gels was probed using small-angle X-ray scattering (SAXS), where the SAXS patterns showed an increase of slope in the low-q region with increasing salt concentration arising from aggregation due to the screening of the surface charge of the fibrils.
诸如盐含量和各种pH环境等水质参数会改变凝胶的稳定性及其流变特性。在此,我们研究了不同浓度的NaCl和不同pH环境对TEMPO氧化纤维素纳米原纤维(OCNF)和淀粉基水凝胶流变特性的影响。添加NaCl会使OCNF:淀粉(1:1重量比)共混凝胶的硬度增加,其中盐在减少OCNF原纤维间的排斥相互作用方面发挥了重要作用。这些水凝胶在pH 5.0至9.0时的流变特性未发生变化。然而,在较低pH(4.0)下,OCNF和OCNF:淀粉凝胶的硬度和粘度似乎因质子诱导的原纤维相互作用而增加。相反,在较高pH(11.5)下,由于形成了更致密且聚集的凝胶网络,观察到了脱水收缩现象。通过ζ电位测量探究了这些水凝胶的相互作用以及聚集行为。此外,使用小角X射线散射(SAXS)对OCNF凝胶的纳米结构进行了探测,其中SAXS图谱显示,随着盐浓度的增加,低q区域的斜率增大,这是由于原纤维表面电荷被屏蔽而导致聚集所致。