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光对十二烷基硫酸钠与含偶氮苯的阳离子bola型表面活性剂的水性混合物自组装的影响

Effect of light on self-assembly of aqueous mixtures of sodium dodecyl sulfate and a cationic, bolaform surfactant containing azobenzene.

作者信息

Hubbard F Pierce, Abbott Nicholas L

机构信息

Department of Chemical and Biological Engineering, University of Madison-Wisconsin, 1415 Engineering Drive, Madison, Wisconsin 53706-1691, USA.

出版信息

Langmuir. 2007 Apr 24;23(9):4819-29. doi: 10.1021/la0632124. Epub 2007 Mar 24.

Abstract

We report light and small-angle neutron scattering measurements that characterize microstructures formed in aqueous surfactant solutions (up to 1.0 wt % surfactant) containing mixtures of sodium dodecyl sulfate (SDS) and the light-sensitive bolaform surfactant, bis(trimethylammoniumhexyloxy)azobenzene dibromide (BTHA) as a function of composition, equilibration time, and photostationary state (i.e., solutions rich in cis-BTHA or trans-BTHA). We observed formation of vesicles in both SDS-rich and trans-BTHA-rich regions of the microstructure diagram, with vesicles present over a particularly broad range of compositions for trans-BTHA-rich solutions. Illumination of mixtures of BTHA and SDS with a broadband UV light source leads to formation of photostationary states where the fraction of BTHA present as cis isomer (75-80% cis-BTHA) is largely independent of the mixing ratio of SDS and BTHA. For a relatively limited set of mixing ratios of SDS and BTHA, we observed UV illumination of SDS-rich vesicles to result in the reversible transformation of the vesicles to micellar aggregates and UV illumination of BTHA-rich vesicles to result in irreversible precipitation. Surprisingly, however, for many mixtures of trans-BTHA and SDS that formed solutions containing vesicles, illumination with UV light (which was confirmed to lead to photoisomerization of BTHA) resulted in only a small decrease in the number of vesicles in solution, relatively little change in the sizes of the remaining vesicles, and coexistance of the vesicles with micelles. These observations are consistent with a physical model in which the trans and cis isomers of BTHA present at the photostationary state tend to segregate between the different microstructures coexisting in solution (e.g., vesicles rich in trans-BTHA and SDS coexist with micelles rich in cis-BTHA and SDS). The results presented in this paper provide guidance for the design of light-tunable surfactants systems.

摘要

我们报告了光散射和小角中子散射测量结果,这些测量表征了在含有十二烷基硫酸钠(SDS)和光敏双球形表面活性剂双(三甲基铵己氧基)偶氮苯二溴化物(BTHA)混合物的水性表面活性剂溶液(表面活性剂含量高达1.0 wt%)中形成的微观结构,该微观结构是组成、平衡时间和光稳态(即富含顺式-BTHA或反式-BTHA的溶液)的函数。我们观察到在微观结构图中富含SDS和富含反式-BTHA的区域都形成了囊泡,对于富含反式-BTHA的溶液,囊泡存在于特别宽的组成范围内。用宽带紫外光源照射BTHA和SDS的混合物会导致形成光稳态,其中以顺式异构体形式存在的BTHA的比例(75 - 80%顺式-BTHA)在很大程度上与SDS和BTHA的混合比例无关。对于SDS和BTHA相对有限的一组混合比例,我们观察到富含SDS的囊泡经紫外光照射会导致囊泡可逆地转变为胶束聚集体,而富含BTHA的囊泡经紫外光照射会导致不可逆沉淀。然而,令人惊讶的是,对于许多形成含有囊泡溶液的反式-BTHA和SDS混合物,用紫外光照射(已证实会导致BTHA的光异构化)只会使溶液中囊泡的数量略有减少,剩余囊泡的尺寸变化相对较小,并且囊泡与胶束共存。这些观察结果与一个物理模型一致,即在光稳态下存在的BTHA的反式和顺式异构体倾向于在溶液中共存的不同微观结构之间分离(例如,富含反式-BTHA和SDS的囊泡与富含顺式-BTHA和SDS的胶束共存)。本文给出的结果为光可调表面活性剂体系的设计提供了指导。

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