Wang Yan, Li Ya-Xin, Cseh Liliana, Chen Yong-Xuan, Yang Shu-Gui, Zeng Xiangbing, Liu Feng, Hu Wenbing, Ungar Goran
Shaanxi International Research Centre for Soft Matter, State Key Laboratory for Mechanical Behaviour of Materials, Xi'an Jiaotong University, Xi'an 710049, China.
School of Chemistry and Chemical Engineering, Henan University of Technology, Zhengzhou 450001, China.
J Am Chem Soc. 2023 Aug 9;145(31):17443-17460. doi: 10.1021/jacs.3c06164. Epub 2023 Jul 31.
The recently discovered orthorhombic liquid crystal (LC) phase of symmetry is proving to be widespread. In this work, a chiral hydroxybutyrate linkage is inserted into the molecular core of hexacatenar rodlike compounds, containing a thienylfluorenone fluorophore. In addition to more usual tools, the methods used include grazing-incidence X-ray scattering, modulated differential scanning calorimetry (DSC), flash DSC with rates up to 6000 K/s, and chiro-optical spectroscopies using Mueller matrix method, plus conformational mapping. Although pure and enantiomers form only a strongly chiral hexagonal columnar LC phase (Col*), the racemic mixture forms a highly ordered phase with 4 right- and 4 left-handed twisted ribbon-like columns traversing its large unit cell. In that structure, the two enantiomers locally deracemize and self-sort into the columns of their preferred chirality. The twisted ribbons in , with a 7.54 nm pitch, consist of stacked rafts, each containing ∼2 side-by-side molecules, the successive rafts rotated by 17°. In contrast, an analogous achiral compound forms only the columnar phase. The multiple methods used gave a comprehensive picture and helped in-depth understanding not only of the phase but also of the "parachiral" Col* in pure enantiomers with irregular helicity, whose chirality is compared to the magnetization of a paramagnet in a field. Unusual short-range ordering effects are also described. An explanation of these phenomena is proposed based on conformational analysis. Surprisingly, the isotropic-columnar transition is extremely fast, completing within ∼20 ms. A clear effect of phase on UV-vis absorption and emission is observed.
最近发现的具有对称性的正交晶系液晶(LC)相正被证明是广泛存在的。在这项工作中,一个手性羟基丁酸酯键被插入到含有噻吩基芴酮荧光团的六链杆状化合物的分子核心中。除了更常用的工具外,所使用的方法还包括掠入射X射线散射、调制差示扫描量热法(DSC)、速率高达6000 K/s的快速DSC,以及使用穆勒矩阵方法的手性光学光谱法,外加构象映射。尽管纯的对映体仅形成强手性的六方柱状液晶相(Col*),但外消旋混合物形成了一种高度有序的相,其大晶胞中有4个右旋和4个左旋扭曲带状柱。在该结构中,两种对映体在局部发生消旋并自分类到其偏好手性的柱中。 中的扭曲带间距为7.54 nm,由堆叠的筏组成,每个筏包含约2个并排的分子,相邻的筏旋转17°。相比之下,一种类似的非手性化合物仅形成柱状相。所使用的多种方法给出了全面的图景,不仅有助于深入理解 相,还有助于深入理解纯对映体中具有不规则螺旋度的“准手性”Col*,其手性与磁场中顺磁体的磁化强度相比较。还描述了不寻常的短程有序效应。基于构象分析提出了对这些现象 的解释。令人惊讶的是,各向同性 - 柱状转变极快,在约20毫秒内完成。观察到相态对紫外 - 可见吸收和发射有明显影响。