Department of Inorganic Chemistry, University of Bucharest, 23 Dumbrava Rosie St., Bucharest, Sector 2, 020484, Romania.
National Institute of Materials Physics, P.O. Box MG-7, 077125, Magurele, Romania.
Chemistry. 2018 Sep 12;24(51):13512-13522. doi: 10.1002/chem.201801781. Epub 2018 Aug 13.
A series of liquid crystals with various lanthanide ions (Eu , Sm , and Tb ) was designed and prepared starting from the corresponding lanthanide nitrates and N-alkylated 4-pyridone derivatives bearing mesogenic 3,4,5-tris(alkyloxy)benzyl moieties (alkyl=hexyl, octyl, decyl, dodecyl, tetradecyl, or hexadecyl). These new lanthanidomesogens were investigated for their mesogenic properties by a combination of differential scanning calorimetry, polarizing optical microscopy, and temperature-dependent powder X-ray diffraction (XRD). Their thermal stability was assessed by thermogravimetric analysis. All of these complexes show enantiotropic liquid-crystalline behavior with lamellar (SmA) phases in the case of shorter-chain complexes (C and C ) or hexagonal columnar phases (Col ) for complexes with longer alkyl chains (C , C , and C ), which were assigned on the basis of their characteristic textures and XRD studies. For complexes with an intermediate number of carbon atoms in the side chains (C ), both a lamellar phase at lower temperatures and a Col phase at higher temperatures were evidenced. In the solid state, all these complexes show characteristic emissions assigned to the corresponding lanthanide ion. In addition, the luminescence decay curves showed single-exponential decays with characteristic times in the millisecond range (0.75-0.90 ms for Eu , 0.045-0.060 ms for Sm , and 0.75-1.05 ms for Tb ).
一系列含有各种镧系离子(Eu、Sm 和 Tb)的液晶是从相应的镧系硝酸盐和带有介晶 3,4,5-三(烷氧基)苄基部分(烷基=己基、辛基、癸基、十二烷基、十四烷基或十六烷基)的 N-烷基化 4-吡啶酮衍生物开始设计和制备的。通过差示扫描量热法、偏光显微镜和温度依赖的粉末 X 射线衍射(XRD)相结合的方法研究了这些新的镧系介晶的介晶性质。通过热重分析评估了它们的热稳定性。所有这些配合物都表现出各向异性液晶行为,具有层状(SmA)相,对于较短链配合物(C 和 C)或具有较长烷基链的配合物的六方柱状相(Col )(C、C 和 C),这是基于它们的特征纹理和 XRD 研究确定的。对于侧链中具有中等碳原子数的配合物(C),在较低温度下存在层状相,在较高温度下存在 Col 相。在固态下,所有这些配合物都显示出特征发射,分配给相应的镧系离子。此外,荧光衰减曲线显示出具有毫秒范围内特征时间的单指数衰减(Eu 为 0.75-0.90 ms,Sm 为 0.045-0.060 ms,Tb 为 0.75-1.05 ms)。