Shan Jicheng, Guo Jing, Guan Fucheng, Li Feng, Di Chunqiu
School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, China.
Liaoning Engineering Technology Research Center of Function Fiber and Its Composites, Dalian Polytechnic University, Dalian 116034, China.
Gels. 2022 Feb 22;8(3):139. doi: 10.3390/gels8030139.
The purpose of adding cellulose nanocrystals (CNCs) into sodium alginate (SA) and Antarctic krill protein (AKP) system is to use the ionic cross-linking of SA and AKP and the dynamic hydrogen-bonding between them and CNCs to construct multiple cross-linking structures, to improve the water-resistance and strength of SA/AKP/CNCs composite fiber. Based on the structural viscosity index in rheological theory, the ratio of spinning solution and temperature were optimized by studying the structural viscosity index of the solution under different CNCs content and temperature, then the composite fiber was prepared by wet spinning. We found that when the content of CNCs is 0.8% and 1.2%, the temperature is 45 °C and 55 °C, the structural viscosity is relatively low. Under the optimal conditions, the intermolecular hydrogen bonds decrease with the increase of temperature. Some of the reduced hydrogen bonds convert into intramolecular hydrogen bonds. Some of them exist as free hydroxyl; increasing CNCs content increases intermolecular hydrogen bonds. With the increase of temperature, the crystallinity of composite fiber increases. The maximum crystallinity reaches 27%; the CNCs content increases from 0.8% to 1.2%, the breaking strength of composite fiber increases by 31%. The water resistance of composite fiber improves obviously, while the swelling rate is only 14%.
将纤维素纳米晶体(CNCs)添加到海藻酸钠(SA)和南极磷虾蛋白(AKP)体系中的目的是利用SA与AKP之间的离子交联以及它们与CNCs之间的动态氢键来构建多重交联结构,以提高SA/AKP/CNCs复合纤维的耐水性和强度。基于流变学理论中的结构粘度指数,通过研究不同CNCs含量和温度下溶液的结构粘度指数,优化纺丝溶液的比例和温度,然后通过湿法纺丝制备复合纤维。我们发现,当CNCs含量为0.8%和1.2%,温度为45℃和55℃时,结构粘度相对较低。在最佳条件下,分子间氢键随温度升高而减少。一些减少的氢键转化为分子内氢键。其中一些以游离羟基的形式存在;增加CNCs含量会增加分子间氢键。随着温度升高,复合纤维的结晶度增加。最大结晶度达到27%;CNCs含量从0.8%增加到1.2%,复合纤维的断裂强度提高了31%。复合纤维的耐水性明显提高,而溶胀率仅为14%。