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Mechanical, Thermal, and Swelling Properties of Cross-linked Hydrogels Based on Oxidized Cellulose Nanowhiskers and Chitosan/poly(vinyl alcohol) Blends

机译:基于氧化纤维素纳米床和壳聚糖/聚(乙烯醇)共混物的交联水凝胶的机械,热和溶胀性能

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摘要

Cross-linked hydrogels of chitosan/poly(vinyl alcohol) (PVA)/oxidized cellulose nanowhiskers (CNWs) were prepared by using oxidized CNWs as a cross-linker. The effects of the oxidation level of CNWs on the swelling behavior, thermal stability, viscoelastic properties and compressive strength of the hydrogels were studied. Chemical cross-links, hydrogen bonds, as well as nanofiller reinforcement between the three materials played a major role in determining the properties of the hydrogels. Swelling test results showed that the incorporation of oxidized CNWs decreased the water absorbability of the hydrogels due to the increase in cross-linking degree. Viscoelastic properties of the hydrogels with oxidized CNWs was increased by 537 % in storage modulus, from 4.65 kPa to 29.6 kPa. Compressive strength of 181.5 kPa at 50 % strain was observed from the cross-linked hydrogels, compared with 21.2 kPa of the non-cross-linked hydrogels. The thermal experiments showed that the chemical cross-linking slightly increase the resistance toward thermal degradation of the hydrogels.
机译:通过使用氧化的CNW作为交联剂制备壳聚糖/聚(乙烯醇)/聚(PVA)/氧化纤维素纳米须须(CNWS)的交联水凝胶。研究了CNWS氧化水平对水凝胶的溶胀行为,热稳定性,粘弹性和抗压强度的影响。三种材料之间的化学交联,氢键以及纳米填充加强件在确定水凝胶的性质方面发挥了重要作用。溶胀试验结果表明,由于交联度的增加,氧化CNW的掺入降低了水凝胶的吸水性。氧化CNWs的水凝胶的粘弹性在4.65kPa至29.6kPa中升高了537%的储存量。与交联水凝胶中观察到50%菌株的抗压强度为50%菌株,与21.2kPa的非交联水凝胶相比。热实验表明,化学交联略微增加了水凝胶的热降解抗性。

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