Department of Chemistry and Biochemistry, University of Windsor, 401 Sunset Ave, Windsor, ON, N9B 3P4, Canada.
College of Science and Health Professions, King Saud bin Abdulaziz University for Health Sciences, Riyadh, 11481, Kingdom of Saudi Arabia.
Chempluschem. 2021 Feb;86(2):319-339. doi: 10.1002/cplu.202100024.
The properties of organic dyes depend as much on their intermolecular interactions as on their molecular structure. While it is generally predictable what supramolecular structure would be ideal for a specific application, the generation of specific supramolecular structures by molecular design and suitable processing methods remains to be a challenge. A versatile approach to different supramolecular structures has been the application of mesomorphism in conjunction with alignment techniques and self-assembly at interfaces. Reviewed here is the columnar mesomorphism of board-shaped dyes perylene, indigo, isoindigo, diketopyrrolopyrrole, and quinoxalinophenanthrophenazine. They generate a larger number of different supramolecular structures than conventional disc-shaped (discotic) mesogens because of their non-circular shape and directional intermolecular interactions. The mesomorphism of all but the perylene derivatives is systematically and comprehensively covered for the first time.
有机染料的性质不仅取决于其分子结构,还取决于其分子间相互作用。虽然通常可以预测出对于特定应用来说理想的超分子结构是什么,但通过分子设计和合适的处理方法生成特定的超分子结构仍然是一个挑战。一种实现不同超分子结构的通用方法是将介晶态与取向技术以及界面处的自组装结合使用。本文综述了 board-shaped 染料苝、靛蓝、异吲哚、二酮吡咯并吡咯、喹喔啉并吩嗪恶嗪的柱状介晶态。由于它们的非圆形形状和方向性分子间相互作用,它们产生了比传统的圆盘状(盘状)介晶体更多的不同超分子结构。除了苝衍生物之外,所有这些染料的介晶态都被首次系统而全面地涵盖。