Choi Yu-Jin, Koo Jahyeon, Wi Youngjae, Jang Junhwa, Oh Mintaek, Rim Minwoo, Ko Hyeyoon, Yoon Won-Jin, You Nam-Ho, Jeong Kwang-Un
Department of Polymer-Nano Science and Technology and Department of Nanoconvergence Engineering, Jeonbuk National University, Jeonju 54896, Republic of Korea.
Materials Department, University of California, Santa Barbara, Santa Barbara, California 93106, United States.
ACS Appl Mater Interfaces. 2023 Aug 30;15(34):41000-41006. doi: 10.1021/acsami.3c09139. Epub 2023 Aug 16.
Disc-shaped building blocks with columnar phases have attracted attention for their potential in optical applications, including a retarder. However, to achieve coatable high-performance optical films, it is essential to understand a subtle interaction balance between building blocks and relevant self-assembled behaviors during material processing. Herein, we studied a self-assembled nanocolumn evaluation of linear butterfly-shaped dendrons (T-AD) consisting of thiophene-based conjugated core and flexible alkyl dendron. X-ray diffraction provided insight into the unique hexagonal columnar liquid crystal phase of T-AD, driven by intermolecular hydrogen bonding and coplanarity of the thiophene-based conjugated core. The formation of a self-assembled nanocolumn with high mobility enabled the uniaxial orientation of butterfly-shaped T-AD on the aligned rod-shaped nematic reactive mesogens, resulting in a transparent and colorless two-layered negative retarder. The self-assembled nanocolumn consisting of butterfly-shaped molecule would break a new ground for developing advanced optical thin films.
具有柱状相的盘状积木因其在包括延迟器在内的光学应用中的潜力而受到关注。然而,要实现可涂布的高性能光学薄膜,了解积木之间微妙的相互作用平衡以及材料加工过程中相关的自组装行为至关重要。在此,我们研究了由噻吩基共轭核和柔性烷基树枝状分子组成的线性蝴蝶形树枝状分子(T-AD)的自组装纳米柱评估。X射线衍射揭示了T-AD独特的六方柱状液晶相,这是由分子间氢键和噻吩基共轭核的共面性驱动的。具有高迁移率的自组装纳米柱的形成使蝴蝶形T-AD在排列的棒状向列型反应性液晶元上实现了单轴取向,从而形成了透明无色的双层负延迟器。由蝴蝶形分子组成的自组装纳米柱将为开发先进的光学薄膜开辟新的道路。