聚甘油酯基纳米乳液的相行为。

Liang Gan, Dingyuan Cui, Nawab Ali, Qianjie Zhang, Dongmei Zhang, Wen Jiang, Wanping Zhang
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引用次数: 0

摘要

以聚甘油酯为乳化剂制备纳米乳液。以癸酸甘油三酯(318)、矿物油和角鲨烷(Squ)为油,采用相图法分析了乳化剂、油和多元醇对纳米乳相行为的影响。研究了影响水包油纳米乳面积的各种因素。结果表明:亲水的聚甘油酯-4月桂酸酯有利于半透明纳米乳的形成,而亲脂的聚甘油酯-4油酸酯能协同乳化性能,更有利于纳米乳的形成;油的种类会影响乳化剂的乳化能力。研究发现,以癸酸甘油三酯为油,有利于形成半透明纳米乳。然而,当矿物油和角鲨烷作为油时,几乎不可能形成半透明的纳米乳液。水溶性荷荷巴酯的加入有利于油水乳状液的形成。此外,甘油还能改善水介质的极性,增强乳化剂与水介质之间的亲和力,有助于形成半透明的纳米乳液。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase Behavior of Polyglycerol Ester-Based Nanoemulsions.

Nanoemulsions were prepared using polyglycerol esters as emulsifiers. The effects of emulsifiers, oils, and polyols on the phase behavior of nanoemulsions were analyzed by phase diagram method using caprylic acid capric triglyceride (318), mineral oil, and squalane (Squ) as oils respectively. Various factors affecting the area of the oil-in-water (O/W) nanoemulsion were investigated. The results showed that hydrophilic polyglyceryl-4 laurate was beneficial to the formation of translucent nanoemulsions, while lipophilic polyglyceryl-4 oleate could synergize the emulsification performance and was more conducive to the formation of nanoemulsions; the type of oil could affect the emulsifying ability of the emulsifier. It was found that it was beneficial to form translucent nanoemulsion when caprylic acid capric triglyceride was adopted as oil. However, it was almost impossible to form translucent nanoemulsions when mineral oil and squalane were used as oils. The addition of water-soluble jojoba ester was beneficial to the formation of O/W emulsion. In addition, glycerin can improve the polarity of the aqueous medium, enhance the affinity between emulsifiers and aqueous medium, and help to form a translucent nanoemulsion.

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来源期刊
Journal of nanoscience and nanotechnology
Journal of nanoscience and nanotechnology 工程技术-材料科学:综合
自引率
0.00%
发文量
0
审稿时长
3.6 months
期刊介绍: JNN is a multidisciplinary peer-reviewed journal covering fundamental and applied research in all disciplines of science, engineering and medicine. JNN publishes all aspects of nanoscale science and technology dealing with materials synthesis, processing, nanofabrication, nanoprobes, spectroscopy, properties, biological systems, nanostructures, theory and computation, nanoelectronics, nano-optics, nano-mechanics, nanodevices, nanobiotechnology, nanomedicine, nanotoxicology.
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