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Rheological behavior of cellulose/silk fibroin blend solutions with ionic liquid as solvent

机译:以离子液体为溶剂的纤维素/丝素蛋白共混溶液的流变行为

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摘要

The rheological behavior of cellulose and silk fibroin blend in 1-butyl-3-methylimidazolium chloride was studied. The data from the rheological results was analyzed to understand the microstructure of the blend solutions. The viscosity and dynamic modulus of the blend solution decreased with increasing ratio of silk fibroin. While comparing the experimental results with the calculated data from the logadditivity rule, it is revealed that zero-shear viscosity, dynamic modulus show positive–negative deviations and a typical continuous–discrete type of morphology could be imaged. At lower shear rate, the change of phase morphology took place at the ratio of about 0.5 volume fraction of cellulose. However, the blend solution showed positive deviations for all cellulose/ silk fibroin blend ratios at high shear rate, which indicates that the dispersion of cellulose and silk fibroin was improved under shear stress. The properties of cellulose/silk fibroin blends observed by Fourier transform infrared spectroscopy and scanning electron microcopy agreed with the result from rheology.
机译:研究了纤维素和丝素蛋白共混物在1-丁基-3-甲基咪唑鎓氯化物中的流变行为。分析流变结果的数据以了解共混溶液的微观结构。共混溶液的粘度和动态模量随丝素蛋白比例的增加而降低。在将实验结果与对数可加性规则的计算数据进行比较时,发现零剪切粘度,动态模量显示出正负偏差,并且可以成像出典型的连续离散形貌。在较低的剪切速率下,相形态的变化以纤维素的约0.5体积分数的比例发生。然而,在高剪切速率下,共混溶液对所有纤维素/丝素蛋白共混比均显示出正偏差,这表明在剪切应力下纤维素和丝素蛋白的分散性得到了改善。通过傅立叶变换红外光谱和扫描电子显微镜观察到的纤维素/丝素蛋白混合物的特性与流变学结果一致。

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