Heo Tae-Young, Choi Soo-Hyung
Department of Chemical Engineering, Hongik University, Seoul 04066, Republic of Korea.
J Phys Chem B. 2024 Feb 8;128(5):1256-1265. doi: 10.1021/acs.jpcb.3c06004. Epub 2024 Jan 30.
Salt concentration-dependent structure of complex coacervate core micelles (C3Ms), formed by polyether-based block copolyelectrolytes containing cationic ammonium (A) or anionic sulfonate (S) groups in aqueous media, is investigated by light scattering and small-angle X-ray/neutron scattering (SAX/NS). As the salt concentration increases, both a core radius () and an aggregation number () significantly decrease, but a corona thickness () is nearly unchanged. Larger salt concentrations can lower the interfacial tension between the coacervate cores and aqueous media, resulting in an increased interfacial area per chain and a more relaxed conformation of the core blocks. Based on the structure characterization, the scaling relationship between structure parameters (i.e., , , and ) and salt concentration is obtained and compared to the theoretical description estimated by the free energy balance between the entropic penalty of core stretching and the interfacial energy. We propose that the free energy contribution of the core block stretching is not negligible in C3Ms because of the highly swollen cores caused by water.
通过光散射和小角X射线/中子散射(SAX/NS)研究了在水性介质中由含有阳离子铵(A)或阴离子磺酸盐(S)基团的聚醚基嵌段共聚物形成的复合凝聚层核心胶束(C3M)的盐浓度依赖性结构。随着盐浓度的增加,核心半径()和聚集数()均显著减小,但冠层厚度()几乎不变。较高的盐浓度可降低凝聚层核心与水性介质之间的界面张力,导致每条链的界面面积增加,且核心嵌段的构象更加松弛。基于结构表征,获得了结构参数(即,,和)与盐浓度之间的标度关系,并与通过核心拉伸的熵罚与界面能之间的自由能平衡估计的理论描述进行了比较。我们提出,由于水导致核心高度溶胀,核心嵌段拉伸的自由能贡献在C3M中不可忽略。