Hagar Mohamed, Ahmed Hoda A, Alnoman Rua B, Jaremko Mariusz, Emwas Abdul-Hamid, Sioud Salim, Abu Al-Ola Khulood A
College of Sciences, Chemistry Department, Yanbu, Taibah University, Yanbu, Saudi Arabia.
Faculty of Science, Chemistry Department, Alexandria University, Alexandria, Egypt.
Front Chem. 2021 Jun 4;9:679885. doi: 10.3389/fchem.2021.679885. eCollection 2021.
A new selection of supramolecular liquid crystal complexes based on complementary molecules formed via hydrogen-bonding interactions is reported. All prepared complexes were prepared from 4-n-alkoxybenzoic acid (An) and N-4-cyanobenzylidene-4-n-(hexyloxy)benzenamine (I). FT-IR, temperature gradient NMR, Mass Spectrometer and Chromatography spectroscopy were carried out to confirm the -CN and -COOH H-bonded complexation by observing their Fermi-bands and the effects of the 1H-NMR signals as well as its elution signal from HPLC. Moreover, binary phase diagrams were established for further confirmation. All formed complexes (I/An) were studied by the use of differential scanning calorimetry and their phase properties were validated through the use of polarized optical microscopy Results of mesomorphic characterization revealed that all presented complexes exhibited enantiotropic mesophases and their type was dependent on the terminal lengths of alkoxy chains. Also, the mesomorphic temperature ranges decreased in the order I/A6 > I/A8 > I/A10 > I/A16 with linear dependency on the chain length. Finally, the density functional theory computational modeling has been carried out to explain the experimental findings. The relation between the dimensional parameters was established to show the effect of the aspect ratio on the mesophase range and stability. The normalized entropy of the clearing transitions (∆S/R) was calculated to illustrate the molecular interaction enhancements with the chain lengths.
报道了一种基于通过氢键相互作用形成的互补分子的新型超分子液晶复合物。所有制备的复合物均由4-正烷氧基苯甲酸(An)和N-4-氰基亚苄基-4-正(己氧基)苯甲胺(I)制备而成。通过观察其费米带、1H-NMR信号的影响以及其在高效液相色谱中的洗脱信号,利用傅里叶变换红外光谱(FT-IR)、温度梯度核磁共振、质谱仪和色谱光谱法来确认-CN和-COOH的氢键络合作用。此外,还建立了二元相图以作进一步确认。通过差示扫描量热法对所有形成的复合物(I/An)进行了研究,并通过偏光显微镜验证了它们的相性质。介晶表征结果表明,所有呈现的复合物均表现出互变介晶相,其类型取决于烷氧基链的末端长度。而且,介晶温度范围按I/A6 > I/A8 > I/A10 > I/A16的顺序降低,与链长度呈线性关系。最后,进行了密度泛函理论计算建模以解释实验结果。建立了尺寸参数之间的关系,以显示长径比对介晶相范围和稳定性的影响。计算了清亮点转变的归一化熵(∆S/R),以说明分子相互作用随链长度的增强情况。