Ciobanu Catalina-Ionica, Epure Elena-Luiza, Soroaga Laurentiu, Simion Aurel, Lisa Gabriela, Carlescu Irina
Department Institute of Interdisciplinary Research-CERNESIM Centre, Institution Alexandru Ioan Cuza, University of Iasi, 11 Carol I, Iasi, 700506, Romania.
Department "Cristofor Simionescu" Faculty of Chemical Engineering and Environmental Protection, Institution Gheorghe Asachi Technical, University of Iasi, 73 Prof.dr.doc. D. Mangeron Street, 700050, Iasi, Romania.
ChemistryOpen. 2025 Jul;14(7):e202400454. doi: 10.1002/open.202400454. Epub 2025 Feb 21.
We report here the synthesis and characterization of some new bent-core asymmetric compounds derived from resorcinol whose thermal behavior has been analyzed by comparison with their analogs derived from 1,3-disubstituted benzene and 2,7-dihydroxynaphthalene containing azoester aromatic units and alkyl chain end. The asymmetric structures contain 4-(4-alkyloxyphenylazo)-benzoyl and 4-methoxy-benzoyl or 3-bromo-4-methoxy-benzoyl as side arms. The investigations have been carried out to reach a better understanding of the structure-properties relationship in such bent-shaped compounds. We observed that a change in molecular structure like the nature of the central core, the symmetry of the structure or the presence of polar lateral substituent influence not only liquid crystalline properties, but also the thermal behavior. The thermogravimetric analysis showed that the bent-core derivatives have a good thermal stability since the degradation of the compounds begins over the isotropization temperature. Theoretical calculations were performed to elucidate the behavior of the compounds. These can assist us in designing new molecules that exhibit specific mesomorphic properties.
我们在此报告了一些源自间苯二酚的新型弯曲核不对称化合物的合成与表征,通过与源自含偶氮酯芳族单元和烷基链端的1,3 - 二取代苯及2,7 - 二羟基萘的类似物进行比较,分析了它们的热行为。这些不对称结构包含4 - (4 - 烷氧基苯基偶氮) - 苯甲酰基和4 - 甲氧基 - 苯甲酰基或3 - 溴 - 4 - 甲氧基 - 苯甲酰基作为侧链。已开展相关研究以更好地理解此类弯曲形化合物的结构 - 性质关系。我们观察到,诸如中心核的性质、结构对称性或极性侧链取代基的存在等分子结构变化不仅会影响液晶性质,还会影响热行为。热重分析表明,这些弯曲核衍生物具有良好的热稳定性,因为化合物的降解始于各向同性温度之上。进行了理论计算以阐明这些化合物的行为。这些计算有助于我们设计出具有特定介晶性质的新分子。