Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona 85721, United States.
J Phys Chem B. 2021 Dec 16;125(49):13585-13596. doi: 10.1021/acs.jpcb.1c09435. Epub 2021 Dec 3.
Rhamnolipids are glycolipids produced by microorganisms with outstanding surfactant properties. They are a class of biosurfactants that are potential candidates for biodegradable and nontoxic replacements of current specialty synthetic surfactants. Building on our previous efforts in developing an efficient and practical chemical methodology to synthesize rhamnolipids allows us to now explore the tunability of rhamnolipid properties. Here, we explore the impact on solution self-assembly and adsorption at the air/water interface of symmetry of the two lipid tails for diastereomeric mixtures of a series of monorhamnolipids of the generic structure Rha-C14-C. Surface activity of the anionic forms of these molecules at pH 8 is described by surface tensiometry. Characteristics of their aggregation behavior in aqueous solutions including hydrodynamic radius, aggregation number, and aggregate morphology are determined using dynamic light scattering and time-resolved fluorescence quenching spectroscopy. The solution aggregation behavior of this series is found to unexpectedly vary in a nonmonotonic fashion. This is explained by molecular structural attributes of each series member that result in differences in the respective intermolecular interactions of various parts of these surfactants.
鼠李糖脂是由具有出色表面活性剂特性的微生物产生的糖脂。它们是一类生物表面活性剂,是可生物降解且无毒的当前特殊合成表面活性剂的潜在替代品。基于我们之前在开发高效实用的化学方法来合成鼠李糖脂方面的努力,我们现在可以探索鼠李糖脂性质的可调节性。在这里,我们研究了一系列通用结构为 Rha-C14-C 的单鼠李糖脂的对映异构体混合物中两个脂质尾的对称性对溶液自组装和在空气/水界面上吸附的影响。通过表面张力法描述了这些分子在 pH 8 下的阴离子形式的表面活性。使用动态光散射和时间分辨荧光猝灭光谱法测定了它们在水溶液中的聚集行为特征,包括水动力半径、聚集数和聚集形态。发现该系列的溶液聚集行为以非单调的方式意外变化。这可以通过每个系列成员的分子结构属性来解释,这些属性导致这些表面活性剂的各个部分的相互作用存在差异。