Zhu Yang-Wen, Xu Zhi-Cheng, Zhang Li, Liu Ping, Hou Yu, Zhang Lei, Zhang Lu
Petroleum Exploration and Production Research Institute, SINOPEC, Beijing 102206, P. R. China.
Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, P. R. China.
Soft Matter. 2024 May 15;20(19):3987-3995. doi: 10.1039/d4sm00269e.
To elucidate the effect of aromatic side chains on dilational rheological properties of -acyltaurate amphiphiles at the decane-water interface, the interfacial rheological properties of sodium -2-(2-naphthoxy)-tetradecanoyltaurinate (12+N-T) and sodium -2-(-butylphenoxy)-tetradecanoyltaurinate (12+4B-T) were investigated utilizing the drop shape analysis method. The effects of adsorption time, interfacial pressure, oscillating frequency, and bulk concentration on the interfacial dilational modulus and phase angle were explored. The results show that the 12+4B-T molecule with a longer hydrophobic chain shows a higher ability for reducing the interfacial tension (IFT). In addition, the interfacial films of both 12+N-T and 12+4B-T are dominated by diffusion exchange at high concentrations. The rigidity of molecules controls the diffusion exchange at low concentrations, while the molecular hydrodynamic radius determines the diffusion exchange at high concentrations. Thus, at low concentrations, the stronger intermolecular interaction between 12+4B-T molecules results in higher dilational modulus values than 12+N-T. When approaching the CMC (critical micelle concentration) value, the rapid diffusion exchange of 12+4B-T between the sublayer micelles and the interface causes a significant decrease in the dilational modulus, while the relatively rigid structure of 12+N-T enables a higher dilational modulus than 12+4B-T. What's more, the longer hydrophobic chain allows 12+4B-T molecules to escape from the interface more easily, resulting in a higher phase angle at low concentrations. However, the diffusion exchange of 12+4B-T is slower than that of 12+N-T, which results in lower phase angles for 12+4B-T than 12+N-T at high concentrations. In general, the introduction of a rigid naphthalene ring in the molecular structure gives the interfacial film greater strength at high concentration. The research results in this paper provide a new technique for the strength regulation of interfacial surfactant adsorption films.
为阐明芳香族侧链对癸烷 - 水界面处α - 酰基牛磺酸盐两亲分子扩张流变性质的影响,利用液滴形状分析方法研究了2 - (2 - 萘氧基) - 十四烷酰基牛磺酸钠(12 + N - T)和2 - (4 - 丁基苯氧基) - 十四烷酰基牛磺酸钠(12 + 4B - T)的界面流变性质。探讨了吸附时间、界面压力、振荡频率和本体浓度对界面扩张模量和相角的影响。结果表明,具有较长疏水链的12 + 4B - T分子表现出更高的降低界面张力(IFT) 的能力。此外,12 + N - T和12 + 4B - T的界面膜在高浓度时均以扩散交换为主。分子刚性在低浓度时控制扩散交换,而分子流体动力学半径在高浓度时决定扩散交换。因此,在低浓度下,12 + 4B - T分子间较强的分子间相互作用导致其扩张模量值高于12 + N - T。当接近临界胶束浓度(CMC)值时,12 + 4B - T在亚层胶束和界面之间的快速扩散交换导致扩张模量显著降低,而12 + N - T相对刚性的结构使其扩张模量高于12 + 4B - T。此外,较长的疏水链使12 + 4B - T分子更容易从界面逸出,导致低浓度时相角更高。然而,12 + 4B - T的扩散交换比12 + N - T慢,这导致高浓度时12 + 4B - T的相角低于12 + N - T。总体而言,分子结构中刚性萘环的引入使界面膜在高浓度时具有更大的强度。本文的研究结果为界面表面活性剂吸附膜的强度调控提供了一种新技术。