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两性离子表面活性剂与阴离子表面活性剂的相互作用:Na(+)-驱动的蠕虫状胶束。

Interaction between zwitterionic surface activity ionic liquid and anionic surfactant: Na(+)-driven wormlike micelles.

机构信息

Key Laboratory of Colloid and Interface Chemistry, Shandong University, Ministry of Education, Jinan, 250100, PR China.

出版信息

J Phys Chem B. 2013 Feb 14;117(6):1886-95. doi: 10.1021/jp308016a. Epub 2013 Feb 1.

DOI:10.1021/jp308016a
PMID:23336558
Abstract

The physicochemical properties of the mixed zwitterionic surface activity ionic liquid/anionic surfactant (N-alkyl-N'-carboxymethyl imidazolium inner salts/sodium dodecyl sulfate, [N-C(12), N'-CO(2)-Im]/SDS) at various molar ratios (R(1) = C([N-C(12),N'-CO(2)-Im])/(C([N-C(12),N'-CO(2)-Im]) + C(SDS)) were investigated by surface tension and steady-state fluorescence measurements. The results show that the mixed [N-C(12), N'-CO(2)-Im]/SDS system has a much lower cmc value and higher surface activity than individual surfactant. Compared with the mixed zwitterionic betaine surfactant/SDS system, the mixture studied exhibits a stronger synergism, i.e., more negative interaction parameters (β(m) and β(σ)). Through addition of NaCl, the wormlike micelles (WMs) could be formed in a [N-C(12), N'-CO(2)-Im]/SDS system. Steady and dynamic rheology was employed to characterize the WMs with different surfactant ratio (R(1)), NaCl concentration, and temperature. An optimal composition, viz., C(T) = 60 mM, R(1) = 0.45, and C(NaCl) = 0.10 M, was detected to form the strongest and longest wormlike micelles. Compared with the WMs formed by a traditional zwitterionic C(12) betaine/anionic surfactant mixture (e.g., laurylamidopropyl betaine/SDS), the WMs studied have a stronger network structure, which is expected to have potential applications in some fields, such as in nanomaterials synthesis, personal care products, and flooding liquid for tertiary oil recovery.

摘要

在不同摩尔比(R(1) = C([N-C(12),N'-CO(2)-Im])/(C([N-C(12),N'-CO(2)-Im]) + C(SDS)))下,通过表面张力和稳态荧光测量研究了两性离子表面活性离子液体/阴离子表面活性剂(N-烷基-N'-羧甲基咪唑内盐/十二烷基硫酸钠,[N-C(12), N'-CO(2)-Im]/SDS)混合物的物理化学性质。结果表明,混合[N-C(12), N'-CO(2)-Im]/SDS 体系具有比单个表面活性剂更低的 cmc 值和更高的表面活性。与混合两性离子甜菜碱表面活性剂/SDS 体系相比,所研究的混合物表现出更强的协同作用,即更负的相互作用参数(β(m)和β(σ))。通过添加 NaCl,可以在[N-C(12), N'-CO(2)-Im]/SDS 体系中形成蠕虫状胶束(WMs)。通过稳态和动态流变学来表征具有不同表面活性剂比(R(1))、NaCl 浓度和温度的 WMs。检测到最佳组成,即 C(T) = 60 mM,R(1) = 0.45,C(NaCl) = 0.10 M,以形成最强和最长的蠕虫状胶束。与由传统两性离子 C(12)甜菜碱/阴离子表面活性剂混合物(例如,月桂酰胺丙基甜菜碱/SDS)形成的 WMs 相比,所研究的 WMs 具有更强的网络结构,有望在某些领域(如纳米材料合成、个人护理产品和三次采油驱油液)中具有潜在应用。

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