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Difference between Chitosan Hydrogels via Alkaline and Acidic Solvent Systems

机译:壳聚糖水凝胶通过碱性和酸性溶剂体系的区别

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摘要

Chitosan (CS) has generated considerable interest for its desirable properties and wide applications. Hydrogel has been proven to be a major and vital form in the applications of CS materials. Among various types of CS hydrogels, physical cross-linked CS hydrogels are popular, because they avoided the potential toxicity and sacrifice of intrinsic properties caused by cross-linking or reinforcements. Alkaline solvent system and acidic solvent system are two important solvent systems for the preparation of physical cross-linked CS hydrogels, and also lay the foundations of CS hydrogel-based materials in many aspects. As members of physical cross-linked CS hydrogels, gel material via alkaline solvent system showed significant differences from that via acidic solvent system, but the reasons behind are still unexplored. In the present work, we studied the difference between CS hydrogel via alkaline system and acidic system, in terms of gelation process, hydrogel structure and mechanical property. In-situ/pseudo in-situ studies were carried out, including fluorescent imaging of gelation process, which provided dynamic visualization. Finally, the reasons behind the differences were explained, accompanied by the discussion about design strategy based on gelation behavior of the two systems.
机译:壳聚糖(CS)以其理想的性能和广泛的应用引起了极大的兴趣。水凝胶已被证明是CS材料应用中的主要且至关重要的形式。在各种类型的CS水凝胶中,物理交联的CS水凝胶很受欢迎,因为它们避免了潜在的毒性,并避免了由交联或增强引起的固有特性的牺牲。碱性溶剂体系和酸性溶剂体系是制备物理交联CS水凝胶的两个重要溶剂体系,在许多方面也为CS水凝胶基材料奠定了基础。作为物理交联CS水凝胶的成员,通过碱性溶剂体系的凝胶材料与通过酸性溶剂体系的凝胶材料显示出显着差异,但其背后的原因仍待探索。在本工作中,我们研究了通过碱体系和酸性体系的CS水凝胶在胶凝过程,水凝胶结构和力学性能方面的差异。进行了原位/假原位研究,包括凝胶化过程的荧光成像,提供了动态可视化。最后,解释了差异的原因,并讨论了基于两个系统凝胶行为的设计策略。

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