Zhang Jinpeng, Li Hongye, Xue Linyu, Pei Xiaomei, Cui Zhenggang, Song Binglei
The Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Wuxi, Jiangsu, 214122, P. R. China.
Soft Matter. 2022 Sep 14;18(35):6694-6702. doi: 10.1039/d2sm00964a.
Wormlike micelles are conventional aggregates that exist in viscoelastic solutions. However, to achieve a solution with prominent viscoelasticity, rather high concentrations of surfactants are usually required due to the flexibility of aggregates in solution. If thread-like aggregates with rigidity can be formed by surfactants, the solutions are expected to show strong viscoelasticity at very low surfactant concentrations. Herein, A novel rosin-based quaternary ammonium surfactant with two head groups (abbreviated as R-11-3-DA) was synthesized. Cryogenic transmission electron microscopy (Cryo-TEM) images showed that flexible nanofibers with diameters of about 7-8 nm and lengths of over 1 μm were formed in the 1 : 1.5 R-11-3-DA : SL solutions. The rigidity of the aggregates seems to be inherited from the rigidity of the surfactant molecules. The novel aggregates endow the solutions with remarkable viscoelasticity at very low concentrations, with a critical overlap concentration of 0.01 wt% and a critical gelling concentration of 0.58 wt%. The rheological behavior of the solutions also shows excellent shear resistance and weak sensitivity to temperature below the critical gelation temperature (). This work reveals the advantages of viscoelastic solutions containing flexible nanofibers. The design principles of new molecular structures and system compositions can be applied to the preparation of smart soft materials based on the self-assembly of molecules.
蠕虫状胶束是存在于粘弹性溶液中的常规聚集体。然而,由于溶液中聚集体的柔韧性,为了获得具有显著粘弹性的溶液,通常需要相当高浓度的表面活性剂。如果表面活性剂能够形成具有刚性的线状聚集体,那么在非常低的表面活性剂浓度下,溶液有望表现出很强的粘弹性。在此,合成了一种具有两个头基的新型松香基季铵盐表面活性剂(简称为R-11-3-DA)。低温透射电子显微镜(Cryo-TEM)图像显示,在1:1.5的R-11-3-DA:SL溶液中形成了直径约7-8nm、长度超过1μm的柔性纳米纤维。聚集体的刚性似乎继承自表面活性剂分子自身的刚性。这种新型聚集体在非常低的浓度下赋予溶液显著的粘弹性,临界重叠浓度为0.01 wt%,临界凝胶化浓度为0.58 wt%。溶液的流变行为还显示出优异的抗剪切性,并且在低于临界凝胶化温度时对温度的敏感性较弱。这项工作揭示了含有柔性纳米纤维的粘弹性溶液的优势。新的分子结构和体系组成的设计原则可应用于基于分子自组装的智能软材料的制备。