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混合离子-非离子表面活性剂纳米乳的形成与稳定性。

Formation and stability of nanoemulsions with mixed ionic-nonionic surfactants.

机构信息

College of Chemistry and Molecular Science, Wuhan University, Wuhan 430072, China.

出版信息

Phys Chem Chem Phys. 2009 Nov 14;11(42):9772-8. doi: 10.1039/b912460h. Epub 2009 Aug 27.

Abstract

A simple, low-energy two-step dilution process has been applied with binary mixtures of ionic-nonionic surfactants to prepare nanoemulsions. The systems consist of water/DDAB-C(12)E(5)/decane. Nanoemulsions were obtained by dilution of concentrates located in bicontinuous microemulsion or lamellar liquid crystal phase regions. The nanoemulsions generated were investigated both by contrast-variation small-angle neutron scattering (SANS) and dynamic light scattering (DLS). The SANS profiles show that C(12)E(5) nanodroplets suffer essentially no structural change on incorporation of the cationic DDAB surfactant, except for increased electrostatic repulsive interactions. Interestingly, SANS indicated that the preferred droplet sizes were hardly affected by the surfactant mixture composition (up to a DDAB molar ratio (m(DDAB)/(m(DDAB) + m(C(12)E(5))) of 0.40) and droplet volume fraction, phi, between 0.006 and 0.120. No notable changes in the structure or radius of nanoemulsion droplets were observed by SANS over the test period of 1 d, although the droplet number intensity decreased significantly in systems stabilized by C(12)E(5) only. However, the DLS sizing shows a marked increase with time, with higher droplet volume fractions giving rise to the largest changes. The discrepancy between apparent nanoemulsion droplet size determined by DLS and SANS data can be attributed to long-range droplet interactions occurring outside of the SANS sensitivity range. The combined SANS and DLS results suggest flocculation is the main mechanism of instability for these nanoemulsions. The flocculation rate is shown to be significantly retarded by addition of the charged DDAB, which may be due to enhanced electrostatic repulsive forces between droplets, leading to improved stability of the nanoemulsions.

摘要

一种简单、低能量的两步稀释法已应用于离子-非离子表面活性剂的二元混合物来制备纳米乳液。这些体系由水/DDAB-C(12)E(5)/癸烷组成。纳米乳液是通过在双连续微乳液或层状液晶相区域的浓缩物进行稀释而获得的。通过对比变化小角中子散射(SANS)和动态光散射(DLS)研究了所生成的纳米乳液。SANS 谱表明,C(12)E(5)纳米液滴在掺入阳离子 DDAB 表面活性剂时基本上没有结构变化,除了增加静电排斥相互作用外。有趣的是,SANS 表明,优选的液滴尺寸几乎不受表面活性剂混合物组成的影响(直到 DDAB 摩尔比(m(DDAB)/(m(DDAB) + m(C(12)E(5)))为 0.40)和液滴体积分数,phi,在 0.006 和 0.120 之间)。在 1 d 的测试期间,通过 SANS 观察不到纳米乳液液滴的结构或半径发生明显变化,尽管仅由 C(12)E(5)稳定的系统中液滴数强度显著降低。然而,DLS 尺寸测量值随时间明显增加,较大的液滴体积分数导致了最大的变化。由 DLS 确定的表观纳米乳液液滴尺寸与 SANS 数据之间的差异可以归因于在 SANS 灵敏度范围内发生的长程液滴相互作用。SANS 和 DLS 的综合结果表明,絮凝是这些纳米乳液不稳定性的主要机制。通过添加带电荷的 DDAB,絮凝速率显著降低,这可能是由于液滴之间的静电排斥力增强,从而提高了纳米乳液的稳定性。

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