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通过相转变组成制备的 O/W 纳米乳的稳定性和可调节性。

Stability and tunability of O/W nanoemulsions prepared by phase inversion composition.

机构信息

Chemistry Department & Institute of Nanotechnology, University of Waterloo, 200 University Av. W, Ontario, N2L 3G1 Canada.

出版信息

Langmuir. 2011 Mar 15;27(6):2299-307. doi: 10.1021/la104728r. Epub 2011 Feb 2.

Abstract

We report on an analysis of the parameters that control both the stability and tunability of O/W nanoemulsions prepared by the phase inversion composition (PIC). These nanoemulsions are prepared with Tween 80 and Span 80, two nonionic surfactants, that can be mixed to adjust the hydrophilic lipophilic balance (HLB). We used a process mixture design method, which combines mixture and process design with phase diagrams, to describe the cross-link between parameters like composition, temperature of preparation, and HLB. Nanoemulsions, stable for several days, are obtained by this method, and they remain unchanged even at high concentration. We have identified the different critical distances of interactions that control the degree of freedom in the motion of the oil droplets. The diameter of these oil droplets could be adjusted between 50 and 300 nm. Different parameters, among them the temperature of preparation, the surfactant over oil ratio (S/O), and the HLB, allow control the final size of the nanoemulsions. As these parameters can exhibit opposite effects on the oil droplet size, the process mixture design method allowed us to illustrate these cross-interactions.

摘要

我们报告了一项分析,该分析研究了通过相转变组成(PIC)制备的 O/W 纳米乳液的稳定性和可调性控制参数。这些纳米乳液是用吐温 80 和司盘 80 两种非离子表面活性剂制备的,这两种表面活性剂可以混合以调节亲水亲油平衡(HLB)。我们使用了一种工艺混合物设计方法,该方法将混合物和工艺设计与相图相结合,描述了组成、制备温度和 HLB 等参数之间的交联。通过这种方法可以获得稳定数天的纳米乳液,即使在高浓度下也不会发生变化。我们已经确定了控制油滴运动自由度的不同相互作用的临界距离。这些油滴的直径可以在 50nm 至 300nm 之间进行调节。不同的参数,包括制备温度、表面活性剂与油的比例(S/O)和 HLB,可以控制纳米乳液的最终粒径。由于这些参数对油滴尺寸可能具有相反的影响,因此工艺混合物设计方法使我们能够说明这些交叉相互作用。

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