自愈水凝胶
流变学
分离乳清蛋白粉
复合数
材料科学
热稳定性
高分子科学
化学工程
乳清蛋白
化学
纳米技术
复合材料
食品科学
高分子化学
工程类
作者
Guangming Zhang,Ping Cheng,Lixia Chu,Hongtao Zhang,Chao Wang,Ruijie Shi,Zhengping Wang,Jun Han,Zhiping Fan
标识
DOI:10.1016/j.ijbiomac.2024.132528
摘要
The burgeoning interest in the versatile hydrogel matrix, with its multifarious applications, has spurred extensive research in recent years. However, the implementation of chemically crosslinked gels on a large-scale has been hindered by their poor biosafety and excessive energy consumption. To address these challenges, this study focuses on harnessing physical methods to engineer novel composite hydrogels utilizing natural polysaccharides Salecan and whey protein isolate, obviating the need for structural modification or chemical crosslinking. The aim was to explore the rheological properties to understand their multiple behaviors. Various models, including Power-Law, Herschel-Bulkley, and Arrhenius, were also employed to compare and analyze rheological parameters. This study holds significance as it is the pioneering report on the hydrogels fabricated from Salecan/Whey protein isolate. These gels possess favorable attributes encompassing optimized elasticity, thermal-stability, enhanced injectability, and self-recovery, rendering them suitable for a multitude of applications in the realms of food and biomedicine.
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