Department of Basic Science, Graduate School of Arts and Sciences, The University of Tokyo, Tokyo 153-8902, Japan.
School of Engineering, RMIT University, Bundoora, Victoria 3083, Australia.
J Org Chem. 2020 Mar 6;85(5):3082-3091. doi: 10.1021/acs.joc.9b02967. Epub 2020 Feb 4.
Phosphorescence colors of cyclodextrin-based insulated Pt-acetylide complexes were tuned by the molecular engineering of the chromophores. A series of Pt complexes bearing various acetylide ligands, including heteroaromatics, were prepared via self-inclusion of the linked macrocycles with the complexes. The decline in the inclusion efficiency derived from the heteroaromatics was overcome by the late-stage insulation via intramolecular slippage after the construction of the Pt-acetylide complexes. The cyclic protection of the thus-formed complexes prevented phosphorescence quenching via molecular interactions, even in the solid state. Accordingly, the tuned emission colors in a dilute system were replicated in the solid state.
通过对主体发色团的分子工程设计,调节了基于环糊精的绝缘型 Pt-炔配合物的磷光颜色。通过将连接的大环与配合物自包含,制备了一系列具有各种炔配体的 Pt 配合物,包括杂芳烃。通过 Pt-炔配合物构建后,通过分子内滑动进行后期的隔离,克服了由于杂芳烃引起的包含效率下降。因此形成的配合物的环状保护即使在固态下也能防止通过分子相互作用的磷光猝灭。因此,在稀溶液中调谐的发射颜色在固态中得到了复制。