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Thermotropic Liquid Crystals of a Non-Mesogenic Group Bearing
作者:Xiankun Lin, Wen Li, Jing Zhang, Hang Sun, Yi Yan, and Lixin Wu*
关键字:Non-Mesogenic, liquid crystal, polyoxometalate
论文来源:期刊
具体来源:Langmuir 2010, 26(16), 13201–13209
发表时间:2010年

A tri(ethylene oxide)octadecyldimethylammonium p-toluenesulfonate (C18NEO3 3 Ts) amphiphile was employed to encapsulate Keggin-type polyoxometalates by ion metathesis reactions with phosphotungstic acid, silicotungstic acid, pentapotassium dodecatungstoborate(III), and phosphomolybdic acid, giving the surfactant-encapsulated polyoxometalates (SEPs) in SEP-P, SEP-Si, SEP-B, and SEP-PMo, respectively. Meanwhile, a C18NEO3 3 PF6 amphiphile was prepared by substituting the p-toluenesulfonate of C18NEO3 3 Ts with hexafluorophosphate. The chemical composition of all SEPs and amphiphiles was characterized through 1H NMR, infrared spectroscopy, mass spectroscopy, elemental analysis, and thermogravimetric analysis. The thermal properties of the SEPs and the amphiphiles were investigated by differential scanning calorimetry, polarized optical microscopy, and variable-temperature X-ray diffraction. The types of anions have a remarkable influence on the thermal properties of the prepared compounds or complexes. C18NEO3 3 Ts displays a smectic A phase with low transition temperatures, and C18NEO3 3 PF6 is a near-room-temperature ionic liquid. In contrast to the fact that SEP-Si and SEP-PMo decompose upon just reaching or before reaching the isotropic liquid state, both SEP-P and SEP-B reveal smectic B phase structures. The present results indicate that the combination of proper cationic amphiphiles and polyoxometalates can impart typical thermotropic liquid-crystalline behavior to SEPs, although no mesogenic groups are introduced into the complex systems.