水溶性多糖醇溶液的合物,接口和泡特性
Rumyana D Stanimirova1, Krassimir D Danov1, Mihail T Georgiev1
1Department of Chemical & Pharmaceutical Engineering, Faculty of Chemistry & Pharmacy, Sofia University, 1164 Sofia, Bulgaria.
Journal of colloid and interface science
|August 2, 2024
概括
聚糖醇表现出复杂的物理化学特性,受其结构的影响. 优化的混合物表现出良好的泡和稳定性,扩大了它们的实际应用.
科学领域:
- 合体和接口科学科学
- 表面活性剂的化学成分
- 物理化学 物理化学
背景情况:
- 多糖醇 (PGEs) 是通过用脂肪酸对多糖醇进行化而合成的.
- 多糖醇的聚合会产生多分散的寡合体混合物 (二,三,和更高阶形式).
- PGEs的复杂结构导致不同的物理化学性质.
研究的目的:
- 描述各种多糖醇的合体和接口特性.
- 研究PGEs产生的泡的形成,稳定性和泡大小分布.
- 了解PGE结构及其功能性质之间的关系.
主要方法:
- 电解导率,静态和动态表面张力测量.
- 聚合和粒大小/分布分析.
- 薄液膜的稳定性,溶解性和泡的特性.
主要成果:
- 包括双尾分子和脂肪酸度在内的PGE结构显著影响细胞,聚合和囊泡形成.
- 对等热体和薄液膜的理论解释提供了对吸附能量,分子相互作用和微粒大小的见解.
- 聚糖单酸盐显示自发乳化;短链PGE提供优良的泡,但稳定性较低.
- 短链PGE和多糖单酸的最佳混合物可以实现良好的泡性和稳定性,防止奥斯瓦尔德成熟.
结论:
- PGEs的物理化学特性可以通过结构控制来调整.
- 特定的PGE配方,特别是混合物,可以增强发泡和乳液特性.
- 这些发现表明,水溶性PGEs具有更广泛的实际应用.
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