Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK.
Soft Matter. 2018 Jul 4;14(26):5525-5536. doi: 10.1039/c8sm00755a.
Recent investigations have shown that deep eutectic solvents provide a suitable environment for self-organisation of biomolecules, in particular phospholipids and proteins. However, the solvation of complex lyophilic moieties by deep eutectic solvents still remains unclear. Here we explore the behaviour of zwitterionic surfactants in choline chloride:glycerol eutectic mixture. Dodecyl-2-(trimethylammonio)ethylphosphate and N-alkyl-N,N-dimethyl-3-ammonio-1-propanesulfonate (alkyl = dodecyl, tetradecyl) surfactants were investigated by means of surface tension, X-ray reflectivity and small-angle neutron scattering. These surfactants were found to remain surface active and form globular micelles in deep eutectic solvents. Still, the surface behaviour of these species was found to differ depending on the headgroup and tail structure. The morphology of the micelles also slightly varies between surfactants, demonstrating differences in the packing of individual monomers. The characteristics of mixtures of the dodecyl surfactants is also reported, showing a deviation from ideal mixing associated with attractive interactions between sulfobetaine and phosphocholine headgroups. Such non-ideality results in variation of the surface behaviour and self-assembly of these surfactant mixtures. The results presented here will potentially lead to the development of new alternatives for drug-delivery, protein solubilisation and biosensing through a better fundamental understanding of the behaviour of zwitterionic surfactants in deep eutectic solvents.
最近的研究表明,深共晶溶剂为生物分子的自组织提供了合适的环境,特别是磷脂和蛋白质。然而,深共晶溶剂对复杂亲水性基团的溶解仍然不清楚。在这里,我们研究了两性离子表面活性剂在氯化胆碱:甘油共晶混合物中的行为。通过表面张力、X 射线反射率和小角中子散射研究了十二烷基-2-(三甲基铵基)乙基磷酸酯和 N-烷基-N,N-二甲基-3-氨丙基磺酸盐(烷基=十二烷基,十四烷基)表面活性剂。这些表面活性剂在深共晶溶剂中仍然保持表面活性并形成球状胶束。然而,这些物质的表面行为发现因头基和尾结构而异。胶束的形态也在不同的表面活性剂之间略有变化,表明单体的排列存在差异。还报告了十二烷基表面活性剂混合物的特性,表明与磺基甜菜碱和膦酸胆碱头基之间的吸引力相互作用有关的理想混合偏差。这种非理想性导致这些表面活性剂混合物的表面行为和自组装发生变化。这里呈现的结果可能会通过更好地理解两性离子表面活性剂在深共晶溶剂中的行为,为药物输送、蛋白质增溶和生物传感开发新的替代品提供依据。