Punjani Vidhika, Mohiuddin Golam, Kaur Supreet, Choudhury Angshuman Roy, Paladugu Sathyanarayana, Dhara Surajit, Ghosh Sharmistha, Pal Santanu Kumar
Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Sector 81, Knowledge City, Manauli, 140306, India.
School of Physics, University of Hyderabad, Hyderabad, 500046, India.
Chemistry. 2020 May 7;26(26):5859-5871. doi: 10.1002/chem.201905707. Epub 2020 Apr 21.
Recently, an unprecedented observation of polar order, thermochromic behavior, and exotic mesophases in new chiral, bent-shaped systems with a -CH moiety placed at the transverse position of the central core was reported. Herein, a homologous series of compounds with even-numbered carbon chains from n=4 to 18 were synthesized, in which -Cl was substituted for -CH at the kink position and a drastic modification in the phase structure of the bent-shaped molecule was observed. An unusual stabilization of the cubic blue phase (BP) over a wide range of 16.4 °C has been witnessed. Two homologues in this series (1-12 and 1-14) exhibit an interesting phase sequence consisting of BPI/II, chiral nematic, twist grain boundary, smectic A, and smectic X (SmX) phases. The higher homologues (1-16 and 1-18) stabilize the SmX phase enantiotropically over the entire temperature range. Crystal structure analysis confirmed the bent molecular architecture, with a bent angle of 148°, and revealed the presence of two different molecular conformations in an asymmetric unit of compound 1-4. A DFT study corroborated that the -Cl moiety at the central core of the molecule led to an increase in the dipole moment along the transverse direction, which, in turn, facilitated the unusual stabilization of frustrated structures. Crystal polymorphism has been evidenced in three homologues (1-10, 1-12, and 1-14) of the series. On the application of mechanical pressure through grinding, compound 1-10 transformed from a bright yellow crystalline solid to a dark orange-green amorphous solid, which reversed upon dropwise addition of dichloromethane, indicating reversible mechanochromism in this class of compounds. In addition, excellent thermochromic behavior has been observed for compound 1-10 with a controlled temperature-color combination.
最近,有报道称在一种新型手性弯曲形状体系中观察到了前所未有的极性有序、热致变色行为和奇异的中间相,该体系在中心核的横向位置带有一个-CH基团。在此,合成了一系列碳链长度从n = 4到18的偶数碳同系物,其中在扭结位置用-Cl取代了-CH,并观察到弯曲形状分子的相结构发生了显著变化。在16.4°C的宽温度范围内见证了立方蓝相(BP)的异常稳定。该系列中的两个同系物(1-12和1-14)呈现出由BPI/II、手性向列相、扭曲晶界相、近晶A相和近晶X(SmX)相组成的有趣相序。较高的同系物(1-16和1-18)在整个温度范围内对映地稳定SmX相。晶体结构分析证实了弯曲的分子结构,弯曲角度为148°,并揭示了化合物1-4的不对称单元中存在两种不同的分子构象。密度泛函理论研究证实,分子中心核处的-Cl基团导致沿横向方向的偶极矩增加,这反过来又促进了受挫结构的异常稳定。该系列的三个同系物(1-10、1-12和1-14)已证明存在晶体多态性。通过研磨施加机械压力时,化合物1-10从亮黄色结晶固体转变为深橙绿色无定形固体,滴加二氯甲烷后又恢复原状,表明这类化合物具有可逆的机械变色现象。此外,化合物1-10还表现出优异的热致变色行为,具有可控的温度-颜色组合。