Chen Shibo, Du Xuyang, Han Qingqing, Luo Jingjing, Wang Fen, Liu Jiaming, Yu Yang, Cheng Xiaohong
Key Laboratory of Medicinal Chemistry for Natural Resource, Ministry of Education, Yunnan Research & Development Center for Natural Products, School of Chemical Science and Technology, Yunnan University Kunming 650091 P.R. China
School of Materials and Energy, Yunnan University Kunming 650091 P. R. China
Chem Sci. 2025 Aug 14. doi: 10.1039/d5sc04039f.
Polycatenar columnar liquid crystals T ( = 1-6) of π-conjugated oligothiophenes end-capped with bulky -tris(hexadecyloxy)benzyl carbazole groups exhibit unusual molecular tilted and parallel assemblies, realizing the reversal of birefringence within the columnar liquid crystalline (LC) phases depending on core length and temperature. In the parallel arrangement of short core compounds 2T and 3T, molecules align perpendicular to the column axis. The stacking of these molecules involves a rotational component, resulting in local helical assembly, and this specific packing motif collectively stabilizes the Col/6 phase with negative birefringence. In the tilted arrangement of long core compounds 5T and 6T, the long rigid core-driven tilted assemblies induce a structural transition to the Col/2 phase, accompanied by a characteristic reversal of birefringence from negative to positive. In particular, compound 4T forms a Col/6 phase at lower temperature, but transforms into a Col/2 phase at higher temperature, accompanied by an inversion of optical birefringence. These special LC nanostructures provide important insights into the correlation between the molecular structure and assembly orientation in π-conjugated oligothiophenes. Furthermore, with an increase in π-conjugation length, these compounds exhibit bright blue-to-red emission in both solution and thin-film states, covering the entire visible spectrum and enabling their use in the preparation of full-color light-emitting diodes (LEDs), including white light. Most interestingly, solution-processable nano-films derived from columnar polycatenar oligothiophenes exhibit excellent hole mobility. Thus, this work proposes a strategy to develop polycatenar LC semiconductors that exhibit full-color emission.
末端带有庞大的 - 三(十六烷氧基)苄基咔唑基团的π共轭低聚噻吩的多链柱状液晶T(= 1 - 6)呈现出不寻常的分子倾斜和平行排列,根据核心长度和温度实现柱状液晶(LC)相内双折射的反转。在短核心化合物2T和3T的平行排列中,分子垂直于柱轴排列。这些分子的堆积涉及一个旋转分量,导致局部螺旋组装,这种特定的堆积模式共同稳定了具有负双折射的Col/6相。在长核心化合物5T和6T的倾斜排列中,长刚性核心驱动的倾斜组装诱导向Col/2相的结构转变,伴随着双折射从负到正的特征性反转。特别地,化合物4T在较低温度下形成Col/6相,但在较高温度下转变为Col/2相,伴随着光学双折射的反转。这些特殊的LC纳米结构为π共轭低聚噻吩中分子结构与组装取向之间的相关性提供了重要见解。此外,随着π共轭长度的增加,这些化合物在溶液和薄膜状态下均呈现明亮的蓝到红发射,覆盖整个可见光谱,并使其能够用于制备包括白光在内的全彩色发光二极管(LED)。最有趣的是,由柱状多链低聚噻吩衍生的可溶液加工纳米薄膜表现出优异的空穴迁移率。因此,这项工作提出了一种开发具有全彩色发射的多链LC半导体的策略。