Ahmed H A, Hagar M, Alhaddad O A
College of Sciences, Chemistry Department, Taibah University Yanbu Saudi Arabia
Faculty of Science, Department of Chemistry, Cairo University Cairo Egypt.
RSC Adv. 2019 May 24;9(29):16366-16374. doi: 10.1039/c9ra02558h.
A new series of chair-shaped liquid crystalline complexes were formed through 1 : 1 intermolecular hydrogen bonding between 4-(4-(hexyloxyphenylimino)methyl)phenyl nicotinate and 4-alkoxybenzoic acids, with different alkoxy chains. The mesomorphic behaviour of these supramolecular hydrogen-bonded complexes was investigated through differential scanning calorimetry and polarizing optical microscopy. The Fermi bands of the hydrogen bonding formation were confirmed through Fourier-transform infrared spectroscopy. Schlieren textures of the nematic phase (N) were observed for all prepared complexes. These thermotropic supramolecular complexes were confirmed also using density functional theory calculations. It was found that as the akoxy chain length increased the predicted total energy of the H-bonded complex also increased. The predicted data of the charge distribution explained the nematic mesophase which covered all 1 : 1 mixtures and it could be attributed to more end-to-end aggregations of the alkoxy chains with longer chain lengths. Moreover, formation of the H-bonded complexes greatly affected polarizability with respect to the individual compounds. The polarizability increased three and one third times compared with that of the free acid and base, respectively.
通过4-(4-(己氧基苯基亚氨基)甲基)苯基烟酸酯与具有不同烷氧基链的4-烷氧基苯甲酸之间1:1的分子间氢键作用,形成了一系列新的椅状液晶配合物。通过差示扫描量热法和偏光显微镜研究了这些超分子氢键配合物的介晶行为。通过傅里叶变换红外光谱证实了氢键形成的费米带。对所有制备的配合物均观察到向列相(N)的纹影织构。还使用密度泛函理论计算证实了这些热致超分子配合物。发现随着烷氧基链长度的增加,氢键配合物的预测总能量也增加。电荷分布的预测数据解释了覆盖所有1:1混合物的向列中间相,这可归因于链长较长的烷氧基链更多的端对端聚集。此外,氢键配合物的形成相对于单个化合物极大地影响了极化率。与游离酸和碱相比,极化率分别增加了三倍和三分之一倍。