Kihara Kazuki, Kobayashi Toi, Xu Wei, Kumagai Naoya
Graduate School of Pharmaceutical Sciences, Keio University, 1-5-30 Shibakoen, Minato-ku, Tokyo, 105-8512, Japan.
Institute of Microbial Chemistry, Tokyo, 141-0021, Japan.
Chemistry. 2024 May 2;30(25):e202304176. doi: 10.1002/chem.202304176. Epub 2024 Mar 12.
A new family of 16-membered macrocycles comprising two indole (In) and two quinoline (Q) units, coined In2Q2, was synthesized. Each unit is diagonally located and concatenated in a head-to-tail fashion, furnishing a non-flat saddle-shaped architecture with C symmetry. The synthetic protocol utilizing macrocyclic diamide as a pivotal precursor allowed us to access a series of In2Q2 derivatives bearing various substituents on the periphery. The In2Q2 derivatives and their Zn complexes were emissive in both solution phase and solid state. While the entire architecture of In2Q2 is similar to that of quinoline tetramer TEtraQuinoline, a couple of contrasting physicochemical properties were revealed.
合成了一个由两个吲哚(In)和两个喹啉(Q)单元组成的16元大环新家族,命名为In2Q2。每个单元对角排列并以头对尾的方式连接,形成具有C对称性的非平面鞍形结构。利用大环二酰胺作为关键前体的合成方案使我们能够获得一系列在外围带有各种取代基的In2Q2衍生物。In2Q2衍生物及其锌配合物在溶液相和固态中均有发光。虽然In2Q2的整体结构与喹啉四聚体四喹啉相似,但揭示了一些对比鲜明的物理化学性质。