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生物基三聚表面活性剂体系中形成的黏弹溶致液晶。

Viscoelastic lyotropic liquid crystals formed in a bio-based trimeric surfactant system.

机构信息

Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical & Materials Engineering, Jiangnan University, Wuxi, Jiangsu 214122, China.

出版信息

Soft Matter. 2019 May 22;15(20):4208-4214. doi: 10.1039/c8sm02594k.

Abstract

Exploring the self-assembly of oligomeric surfactants is expected to bridge the gap between conventional and polymeric surfactants. Using the natural resource rosin as the starting material, a bio-based star-shaped trimeric quaternary ammonium surfactant (abbreviated tri-R-4-Phe) was synthesized. With three bulky dehydroabietic acid units in the hydrophobic group, tri-R-4-Phe has a molecular weight of 1684.9 and shows strong affinity towards both water and nonpolar organic compounds. In the presence of tri-R-4-Phe, C12EO3 was able to form lamellar lyotropic liquid crystals over a wide concentration range in water. The tri-R-4-Phe/C12EO3/water tertiary system was investigated by polarizing optical microscopy (POM), small angle X-ray scattering (SAXS) and rheological measurements. The investigated samples with different formulations all showed strong viscoelasticity, and the viscosity increased with the surfactant content. All samples showed interesting shear banding phenomena due to the shear induced mesoscale phase transition in tri-R-4-Phe/C12EO3/water systems. The present work reveals the unique behaviour of trimeric surfactant involved LLC systems and the result may be helpful in investigating delicate molecular self-assembly using natural resources.

摘要

探索低聚表面活性剂的自组装有望弥合传统表面活性剂和聚合物表面活性剂之间的差距。本研究以天然资源松香为起始原料,合成了一种生物基星形三聚季铵盐表面活性剂(简称 tri-R-4-Phe)。在疏水性基团中引入三个庞大的松香酸单元,tri-R-4-Phe 的分子量为 1684.9,对水和非极性有机化合物均具有很强的亲和力。在 tri-R-4-Phe 的存在下,C12EO3 能够在很宽的浓度范围内在水中形成层状溶致液晶。通过偏光显微镜(POM)、小角 X 射线散射(SAXS)和流变学测量对 tri-R-4-Phe/C12EO3/水三元体系进行了研究。用不同配方制备的样品均表现出很强的粘弹性,且随着表面活性剂含量的增加,粘度也随之增加。由于 tri-R-4-Phe/C12EO3/水体系中剪切诱导的介观相转变,所有样品均表现出有趣的剪切带现象。本工作揭示了涉及 LLC 体系的三聚表面活性剂的独特行为,研究结果可能有助于利用天然资源研究精细的分子自组装。

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