Veeraprakash B, Lobo Nitin P, Narasimhaswamy T
Polymer Laboratory and ‡Chemical Physics Laboratory, CSIR-Central Leather Research Institute , Adyar, Chennai 600020, India.
J Phys Chem B. 2015 Dec 3;119(48):15063-74. doi: 10.1021/acs.jpcb.5b09859. Epub 2015 Nov 18.
Three-ring mesogens with a core comprising thiophene linked to one phenyl ring directly and to the other via flexible ester are synthesized with terminal alkoxy chains to probe the mesophase properties and find the molecular order. The phenyl thiophene link in the core offers a comparison of the mesophase features with the molecular shape of the mesogen. The synthesized mesogens display enantiotropic polymesomorphism and accordingly nematic, smectic A, smectic C and smectic B mesophases are perceived depending upon the terminal chain length. For some of the homologues, monotropic higher order smectic phases such as smectic F and crystal E are also witnessed. The existence of polymesomorphism are originally observed by HOPM and DSC and further confirmed by powder X-ray diffraction studies. For the C8 homologue, high resolution solid state (13)C NMR spectroscopy is employed to find the molecular structure in the liquid crystalline phase and using the 2D SLF technique, the (13)C-(1)H dipolar couplings are extracted to calculate the order parameter. By comparing the ratio of local order of thiophene as well as phenyl rings, we establish the bent-core shape of the mesogen. Importantly, for assigning the carbon chemical shifts of the core unit of aligned C8 mesogen, the (13)C NMR measured in mesophase of the synthetic intermediate is employed. Thus, the proposed approach addresses the key step in the spectral assignment of target mesogens with the use of (13)C NMR data of mesomorphic intermediate.
合成了具有由噻吩构成的核心的三环介晶,该核心直接与一个苯环相连,并通过柔性酯与另一个苯环相连,带有末端烷氧基链,以探究中间相性质并确定分子排列。核心中的苯基噻吩连接提供了中间相特征与介晶分子形状的比较。合成的介晶表现出互变多晶型现象,因此根据末端链长度可观察到向列相、近晶A相、近晶C相和近晶B相。对于一些同系物,还观察到了单向高阶近晶相,如近晶F相和晶体E相。多晶型现象最初通过热台偏光显微镜(HOPM)和差示扫描量热法(DSC)观察到,并通过粉末X射线衍射研究进一步证实。对于C8同系物,采用高分辨率固态(13)C核磁共振光谱来确定液晶相中的分子结构,并使用二维自旋锁场(2D SLF)技术提取(13)C-(1)H偶极耦合以计算序参数。通过比较噻吩环和苯环的局部有序度之比,我们确定了介晶的弯曲核形状。重要的是,为了确定取向的C8介晶核心单元的碳化学位移,采用了在合成中间体中间相测量的(13)C NMR。因此,所提出的方法通过使用介晶中间体的(13)C NMR数据解决了目标介晶光谱归属中的关键步骤。