Alaasar Mohamed, Prehm Marko, Belau Sebastian, Sebastián Nerea, Kurachkina Marharyta, Eremin Alexey, Chen Changlong, Liu Feng, Tschierske Carsten
Institute of Chemistry, Martin Luther University Halle-Wittenberg, Kurt Mothes Str. 2, 06120, Halle (Saale), Germany.
Department of Chemistry, Faculty of Science, Cairo University, Giza, Egypt.
Chemistry. 2019 May 2;25(25):6362-6377. doi: 10.1002/chem.201806180. Epub 2019 Apr 11.
In recent years, liquid crystals (LCs) responding to light or electrical fields have gained significant importance as multifunctional materials. Herein, two new series of photoswitchable bent-core liquid crystals (BCLCs) derived from 4-cyanoresorcinol as the central core connected to an azobenzene based wing and a phenyl benzoate wing are reported. The self-assembly of these molecules was characterized by differential scanning calorimetry (DSC), polarizing light microscopy (POM), electro-optical, dielectric, second harmonic generation (SHG) studies, and XRD. Depending on the direction of the COO group in the phenyl benzoate wing, core-fluorination, temperature, and the terminal alkyl chain length, cybotactic nematic and lamellar (smectic) LC phases were observed. The coherence length of the ferroelectric fluctuations increases continuously with decreasing temperature and adopts antipolar correlation upon the condensation into superparaelectric states of the paraelectric smectic phases. Finally, long-range polar order develops at distinct phase transitions; first leading to polarization modulated and then to nonmodulated antiferroelectric smectic phases. Conglomerates of chiral domains were observed in the high permittivity ranges of the synclinic tilted paraelectric smectic phases of these achiral molecules, indicating mirror symmetry breaking. Fine-tuning of the molecular structure leads to photoresponsive bent-core (BC)LCs exhibiting a fast and reversible photoinduced change of the mode of the switching between ferroelectric- and antiferroelectric-like as well as a light-induced switching between an achiral and a spontaneous mirror-symmetry-broken LC phase.
近年来,对光或电场作出响应的液晶作为多功能材料变得极为重要。在此,报道了两个新系列的光开关型弯曲核液晶(BCLC),它们由4-氰基间苯二酚作为中心核,连接到基于偶氮苯的侧翼和苯甲酸苯酯侧翼。通过差示扫描量热法(DSC)、偏光显微镜(POM)、电光、介电、二次谐波产生(SHG)研究以及X射线衍射对这些分子的自组装进行了表征。根据苯甲酸苯酯侧翼中COO基团的方向、核心氟化、温度以及末端烷基链长度,观察到了胞状向列相和层状(近晶)液晶相。铁电涨落的相干长度随着温度降低而持续增加,并在凝聚成顺电近晶相的超顺电状态时呈现反极相关。最后,在不同的相变处出现长程极性有序;首先导致极化调制,然后是未调制的反铁电近晶相。在这些非手性分子的顺斜倾斜顺电近晶相的高介电常数范围内观察到了手性畴的聚集体,表明镜面对称性被打破。分子结构的微调导致光响应性弯曲核(BC)液晶表现出铁电和反铁电样模式之间快速且可逆的光致切换变化,以及非手性和自发镜面对称性破缺液晶相之间的光致切换。