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A Family of Photolabile Nitroveratryl-Based Surfactants That Self-Assemble into Photodegradable Supramolecular Structures

机译:自组装成可光降解的超分子结构的基于光不稳定的基于硝基veratryl的表面活性剂

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摘要

Here we report the synthesis and characterization of a family of photolabile nitroveratryl-based surfactants that form different types of supramolecular structures depending on the alkyl chain lengths ranging from eight to twelve carbon atoms. By incorporating a photocleavable α-methyl-o-nitroveratryl moiety, the surfactants can be degraded, along with their corresponding supramolecular structures, by light irradiation in a controlled manner. The self-assembly of the amphiphilic surfactants was characterized by conductometry to determine the critical concentration for the formation of the supramolecular structures, transmission electron microscopy to determine the size and shape of the supramolecular structures, and dynamic light scattering (DLS) to determine the hydrodynamic diameter of the structures in aqueous solutions. The photodegradation of the surfactants and the supramolecular structures was confirmed using UV-Vis spectroscopy, mass spectrometry, and DLS. This surfactant family could be potentially useful in drug delivery, organic synthesis, and other applications.
机译:在这里,我们报告的合成和表征的光不稳定的基于硝化过饱和的表面活性剂家族,根据烷基链的长度从8到12个碳原子,可形成不同类型的超分子结构。通过掺入光可裂解的α-甲基-邻-硝基veratryl部分,可以通过以可控的方式通过光照射来降解表面活性剂及其相应的超分子结构。通过电导法确定超分子结构形成的临界浓度,透射电子显微镜确定超分子结构的大小和形状以及动态光散射(DLS)以确定流体动力学,来表征两亲性表面活性剂的自组装。水溶液中结构的直径。使用UV-Vis光谱,质谱和DLS证实了表面活性剂和超分子结构的光降解。该表面活性剂家族可能在药物递送,有机合成和其他应用中潜在地有用。

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