School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, P. R. China.
Soft Matter. 2018 Jun 6;14(22):4445-4452. doi: 10.1039/c8sm00467f.
Responsive wormlike micelles (WLMs) constructed by different carboxylic acids are fascinating. However, it is unknown how the position of the carboxylic groups alters the stimuli-response of wormlike micellar systems. Herein, three pH-responsive WLMs based on Gemini-like surfactants (named o-EAPA, m-EAPA, and p-EAPA) were formed and studied through the complexation of N-erucamidopropyl-N,N-dimethylamine (UC22AMPM) and o-phthalic acid (o-PA), m-phthalic acid (m-PA), or p-phthalic acid (p-PA) at the molar ratio of 2 : 1. The viscoelasticity, phase behavior and aggregate microstructure were separately explored by rheological, appearance observation and cryo-TEM methods. The results show that all phthalic acids can protonate UC22AMPM, thereby forming WLMs. However, with the shorter spacer distance between two carboxyl groups in phthalic acid, o-EAPA exhibits the longer length scale of aggregates and a more efficient thickening ability compared to the other two systems. Similar results in the N,N-dimethyl oleoaminde-propylamine (DOAPA) and o-PA, m-PA, and p-PA systems further verify the applicability of this mechanism. Furthermore, the phthalic acid based WLMs are found to exhibit intriguing reversible pH-responsive behaviors, which include promptly switching between a high elastic system and a low viscosity fluid by pH control. The o-EAPA system possesses a larger viscosity maximum, which produces more precipitous viscosity changes as the pH varies. This study is beneficial for the formation of pH-responsive WLMs and to determine their advantages for applications.
由不同羧酸构建的响应性蠕虫状胶束(WLMs)非常迷人。然而,目前尚不清楚羧酸的位置如何改变蠕虫状胶束体系的刺激-响应。在此,通过 N-硬脂酰胺丙基-N,N-二甲基胺(UC22AMPM)与邻苯二甲酸(o-PA)、间苯二甲酸(m-PA)或对苯二甲酸(p-PA)以摩尔比 2:1 络合,合成了三种基于双子表面活性剂的 pH 响应性 WLMs(分别命名为 o-EAPA、m-EAPA 和 p-EAPA)并进行了研究。通过流变学、外观观察和低温透射电镜方法分别研究了粘弹性、相行为和聚集微观结构。结果表明,所有的邻苯二甲酸都可以质子化 UC22AMPM,从而形成 WLMs。然而,随着邻苯二甲酸中两个羧基之间的间隔距离更短,o-EAPA 表现出更长的聚集长度尺度和更高的增稠能力,与其他两个体系相比。在 N,N-二甲基油胺丙基胺(DOAPA)和 o-PA、m-PA 和 p-PA 体系中的类似结果进一步验证了这种机制的适用性。此外,发现基于邻苯二甲酸的 WLMs 表现出有趣的可逆 pH 响应行为,包括通过 pH 控制在高弹性体系和低粘度流体之间快速切换。o-EAPA 体系具有更大的粘度最大值,当 pH 变化时,会产生更陡峭的粘度变化。这项研究有利于 pH 响应性 WLMs 的形成,并确定它们在应用中的优势。