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解锁阳离子偶氮苯光表面活性剂的结构-自组装关系。

Unlocking Structure-Self-Assembly Relationships in Cationic Azobenzene Photosurfactants.

机构信息

School of Chemistry and CRANN , University of Dublin, Trinity College , College Green , Dublin 2 , Ireland.

Jülich Centre for Neutron Science (JCNS) at Heinz Maier-Leibnitz Zentrum (MLZ) , Forschungszentrum Jülich GmbH , Lichtenbergstr. 1 , 85748 Garching , Germany.

出版信息

Langmuir. 2018 Aug 28;34(34):10123-10134. doi: 10.1021/acs.langmuir.8b02109. Epub 2018 Aug 16.

Abstract

Azobenzene photosurfactants are light-responsive amphiphiles that have garnered significant attention for diverse applications including delivery and sorting systems, phase transfer catalysis, and foam drainage. The azobenzene chromophore changes both its polarity and conformation (trans-cis isomerization) in response to UV light, while the amphiphilic structure drives self-assembly. Detailed understanding of the inherent relationship between the molecular structure, physicochemical behavior, and micellar arrangement of azobenzene photosurfactants is critical to their usefulness. Here, we investigate the key structure-function-assembly relationships in the popular cationic alkylazobenzene trimethylammonium bromide (AzoTAB) family of photosurfactants. We show that subtle changes in the surfactant structure (alkyl tail, spacer length) can lead to large variations in the critical micelle concentration, particularly in response to light, as determined by surface tensiometry and dynamic light scattering. Small-angle neutron scattering studies also reveal the formation of more diverse micellar aggregate structures (ellipsoids, cylinders, spheres) than predicted based on simple packing parameters. The results suggest that whereas the azobenzene core resides in the effective hydrophobic segment in the trans-isomer, it forms part of the effective hydrophilic segment in the cis-isomer because of the dramatic conformational and polarity changes induced by photoisomerization. The extent of this shift in the hydrophobic-hydrophilic balance is determined by the separation between the azobenzene core and the polar head group in the molecular structure. Our findings show that judicious design of the AzoTAB structure enables selective tailoring of the surfactant properties in response to light, such that they can be exploited and controlled in a reliable fashion.

摘要

偶氮苯光致表面活性剂是一类对光响应的两亲分子,由于其在包括输送和分类系统、相转移催化和泡沫排水在内的多种应用中具有重要意义,因此受到了广泛关注。偶氮苯生色团在紫外光的作用下,其极性和构象(顺反异构化)都会发生变化,而两亲结构则驱动自组装。深入了解偶氮苯光致表面活性剂的分子结构、物理化学行为和胶束排列之间的固有关系,对于其应用至关重要。在这里,我们研究了流行的阳离子烷基偶氮苯三甲基溴化铵(AzoTAB)系列光致表面活性剂中的关键结构-功能-组装关系。我们表明,表面活性剂结构(烷基尾、间隔长度)的微小变化会导致临界胶束浓度发生很大变化,尤其是在光响应方面,这可以通过表面张力和动态光散射来确定。小角中子散射研究还揭示了比基于简单堆积参数预测的更为多样化的胶束聚集结构(椭圆体、圆柱体、球体)的形成。结果表明,在顺式异构体中,偶氮苯核心位于有效疏水区段,而在光致异构化引起的构象和极性剧烈变化的情况下,它形成了有效亲水区段的一部分。这种疏水-亲水平衡的转移程度取决于分子结构中偶氮苯核心和极性头基之间的分离。我们的研究结果表明,明智地设计 AzoTAB 结构可以选择性地调整表面活性剂的性质以响应光,从而可以可靠地利用和控制它们。

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