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新型咪唑类液晶:实验和计算方法。

Novel Imidazole Liquid Crystals; Experimental and Computational Approaches.

机构信息

Department of Chemistry, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh 11671, Saudi Arabia.

Chemistry Department, Faculty of Science, Islamic University of Madinah, Madinah 42351, Saudi Arabia.

出版信息

Molecules. 2022 Jul 19;27(14):4607. doi: 10.3390/molecules27144607.

Abstract

The liquid crystalline materials named ()-4-(2-(4-oxo-5,5-diphenyl-4,5-dihydro-1H-imidazol-2-yl)hydrazineylidene)methyl)phenyl and 4-(alkoxy)benzoate, , were synthesized and their mesomorphic behaviors were examined. The chemical structures of the produced compounds were confirmed by Fourier-transform infrared spectroscopy (FT-IR), NMR, and elemental analysis. Differential scanning calorimetry (DSC) and polarized optical microscopy were used to investigate the mesomorphic properties of designed heterocyclic derivatives. All the compounds tested had suitable thermal stability and enantiotropic behavior of smectogenic temperature ranges. Furthermore, the enantiotropic smectic C phases were observed to cover all the homologues. Moreover, computational investigations corroborated the experimental findings of the mesomorphic behavior. The reactivity parameters were computed for the derivatives and linked with the experimental data. Theoretical calculations revealed that the polarizability of the studied series increases with the chain length, whereas the HOMO-LUMO energy gap or other reactivity descriptors were less sensitive to the size of the system. On the other hand, the predicted thermodynamic parameters revealed the size dependence of thermal stability of the compounds.

摘要

合成了名为 ()-4-(2-(4-氧代-5,5-二苯基-4,5-二氢-1H-咪唑-2-基)肼基)-甲基)苯基和 4-(烷氧基)苯甲酸酯,并研究了它们的介晶行为。通过傅里叶变换红外光谱 (FT-IR)、NMR 和元素分析确认了所合成化合物的化学结构。差示扫描量热法 (DSC) 和偏光显微镜用于研究设计的杂环衍生物的介晶性质。所有测试的化合物都具有合适的热稳定性和各向异性的介晶温度范围。此外,观察到各向异性的近晶 C 相覆盖了所有同系物。此外,计算研究证实了介晶行为的实验结果。计算了衍生物的反应性参数,并将其与实验数据相关联。理论计算表明,所研究系列的极化率随链长的增加而增加,而 HOMO-LUMO 能隙或其他反应性描述符对体系的大小不太敏感。另一方面,预测的热力学参数揭示了化合物热稳定性的尺寸依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb4f/9316631/cafbc570514e/molecules-27-04607-sch001.jpg

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