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通过界面拉伸流变学研究表面活性剂分子结构对乳液稳定性的影响

Effect of Surfactant Molecular Structure on Emulsion Stability Investigated by Interfacial Dilatational Rheology.

作者信息

Jin Yuejie, Liu Dingrong, Hu Jinhua

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, China.

School of Food Science and Technology, Jiangnan University, Wuxi 214122, China.

出版信息

Polymers (Basel). 2021 Apr 2;13(7):1127. doi: 10.3390/polym13071127.

Abstract

Polyglycerol polyricinolate (PGPR) and polyglycerol-2 dioleate were selected as model surfactants to construct water-in-oil (W/O) emulsions, and the effect of interfacial rheological properties of surfactant film on the stability of emulsions were investigated based on the interfacial dilatational rheological method. The hydrophobicity chain of PGPR is polyricinic acid condensed from ricinic acid, and that of polyglycerol-2 dioleate is oleic acid. Their dynamic interfacial tensions in 15 cycles of interfacial compression-expansion were determined. The interfacial dilatational viscoelasticity was analyzed by amplitude scanning in the range of 1-28% amplitude and frequency sweep in the range of 5-45 mHz under 2% amplitude. It was found that PGPR could quickly reach adsorption equilibrium and form interfacial film with higher interfacial dilatational viscoelastic modulus to resist the deformation of interfacial film caused by emulsion coalescence, due to its branched chain structure and longer hydrophobic chain, and the emulsion thus presented good stability. However, polyglycerol-2 dioleate with a straight chain structure had lower interfacial tension, and it failed to resist the interfacial disturbance caused by coalescence because of its lower interfacial dilatational viscoelastic modulus, and thus the emulsion was unstable. This study reveals profound understanding of the influence of branched structure of PGPR hydrophobic chain on the interfacial film properties and the emulsion stability, providing experimental reference and theoretical guidance for future design or improvement of surfactant.

摘要

选择聚甘油聚蓖麻醇酸酯(PGPR)和聚甘油-2二油酸酯作为模型表面活性剂来构建油包水(W/O)乳液,并基于界面扩张流变学方法研究表面活性剂膜的界面流变性质对乳液稳定性的影响。PGPR的疏水链是由蓖麻油酸缩合而成的聚蓖麻酸,聚甘油-2二油酸酯的疏水链是油酸。测定了它们在15个界面压缩-膨胀循环中的动态界面张力。通过在1%-28%振幅范围内的振幅扫描和在2%振幅下5-45 mHz范围内的频率扫描来分析界面扩张粘弹性。结果发现,由于PGPR具有支链结构和较长的疏水链,它能够快速达到吸附平衡并形成具有较高界面扩张粘弹性模量的界面膜,以抵抗乳液聚并引起的界面膜变形,因此乳液表现出良好的稳定性。然而,具有直链结构的聚甘油-2二油酸酯具有较低的界面张力,并且由于其较低的界面扩张粘弹性模量,它无法抵抗聚并引起的界面干扰,因此乳液不稳定。本研究深入了解了PGPR疏水链的支链结构对界面膜性质和乳液稳定性的影响,为未来表面活性剂的设计或改进提供了实验参考和理论指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90d9/8037813/1c04d76d153c/polymers-13-01127-g001.jpg

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