Academy of Scientific and Innovative Research (AcSIR) , Ghaziabad , Uttar Pradesh 201002 , India.
J Phys Chem B. 2019 Jul 5;123(26):5651-5664. doi: 10.1021/acs.jpcb.9b04282. Epub 2019 Jun 25.
Two hairy-rod π-conjugated mesogens comprising dihexylfluorene and didecyloxyterphenyl are synthesized, and their mesophase properties are examined by hot-stage optical polarizing microscope and differential scanning calorimetry techniques. Both mesogens exhibit enantiotropic nematic mesophase with broad mesophase range. A detailed C NMR study is carried out in solution as well as in nematic mesophase to understand changes in the orientation of the aliphatic chains. Accordingly, the unusual NMR chemical shift value of one of the methylene carbons of the hexyl chain of fluorene moiety in solution is ascribed to ring current effect changes in nematic mesophase owing to variation in the orientation of the hexyl chain. The change in conformation of lateral and alkyl chains in the nematic phase is clearly noticed compared to isotropic solution as the molecular orientation in mesophase is governed by the orientation of the long molecular axis. Furthermore, the C-H dipolar couplings obtained from 2D separated local field experiments in nematic phase aided the assignments of all of the carbons of the molecules besides offering the local order. To comprehend the orientation of the fluorene unit, three order parameters are necessary whereas for the phenyl rings, two order parameters are found to be sufficient. The molecular biaxiality ( S - S ) for fluorene-based mesogen is found to be higher due to the fused nature of the moiety and the presence of dihexyl chains. The orientational ordering of π-conjugated mesogens is crucial as the optoelectronic properties of them critically depend on the orientation of the constituent chromophores. The complete mapping of order parameters of fluorene, the phenyl rings and the alkyl chains showed that despite both molecules exhibiting nematic mesophase, the orientational constraints are governed by the molecular structure as well as the rigidity of the core unit, i.e., fused versus linearly connected rings.
两种包含二己基芴和二癸氧基三联苯的毛棒状π共轭介晶体制备出来了,我们利用热台偏光显微镜和差示扫描量热法技术研究了它们的介晶相性质。这两种介晶均呈现出各向异性向列相,且具有较宽的介晶相范围。我们在溶液和向列相中进行了详细的 C NMR 研究,以了解脂肪链取向的变化。因此,芴基部分的己基链中一个亚甲基碳的不寻常 NMR 化学位移值,被归因于向列相中由于己基链取向的变化而导致的环电流效应的变化。与各向同性溶液相比,在向列相中可以明显观察到侧链和烷基链构象的变化,因为介晶相中分子的取向是由长分子轴的取向决定的。此外,在向列相中通过二维分离局部场实验获得的 C-H 偶极耦合,除了提供局部有序性之外,还辅助了对分子所有碳的归属。为了理解芴单元的取向,需要三个序参量,而对于苯基环,只需要两个序参量。基于芴的介晶的分子双轴性( S - S )由于部分的稠合性质和二己基链的存在而较高。π共轭介晶的取向有序性至关重要,因为它们的光电性能严重依赖于组成发色团的取向。芴、苯基环和烷基链的序参量的完全映射表明,尽管这两种分子都呈现出向列相,但取向约束是由分子结构以及核单元的刚性(即稠合与线性连接的环)决定的。