Yang Bo, Yan Suqiong, Li Chengbo, Ma Hui, Feng Fanda, Zhang Yuan, Huang Wei
State Key Laboratory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Nanjing University Nanjing 210093 P. R. China
School of Materials and Energy, University of Electronic Science and Technology of China Chengdu 610000 P. R. China.
Chem Sci. 2023 Aug 24;14(38):10446-10457. doi: 10.1039/d3sc03201a. eCollection 2023 Oct 4.
Transition metal mediated C-X (X = H, halogen) bond activation provides an impressive protocol for building polyaromatic hydrocarbons (PAHs) in C-C bond coupling and annulation; however, mimicking both the reaction model and Lewis acid mediator simultaneously in a hetero-PAH system for selective C-P bond cleavage faces unsolved challenges. At present, developing the C-P bond activation protocol of the phosphonic backbone using noble-metal complexes is a predominant passway for the construction of phosphine catalysts and P-center redox-dependent photoelectric semiconductors, but non-noble metal triggered methods are still elusive. Herein, we report Mn(iii)-mediated C-P bond activation and intramolecular cyclization of diphosphines by a redox-directed radical phosphonium process, generating phosphahelicene cations or phosphoniums with nice regioselectivity and substrate universality under mild conditions. Experiments and theoretical calculations revealed the existence of the unusual radical mechanism and electron-deficient character of novel phosphahelicenes. These rigid quaternary bonding skeletons facilitated versatile fluorescence with good tunability and excellent efficiency. Moreover, the enantiomerically enriched crystals of phosphahelicenes emitted intense circularly polarized luminescence (CPL). Notably, the modulated CPL of racemic phosphahelicenes was induced by chiral transmission in the cholesteric mesophase, showing ultrahigh asymmetry factors of CPL (+0.51, -0.48). Our findings provide a new approach for the design of emissive phosphahelicenes towards chiral emitters and synthesized precursors.
过渡金属介导的C-X(X = H,卤素)键活化在C-C键偶联和环化反应中为构建多环芳烃(PAHs)提供了一种令人瞩目的方法;然而,在杂多环芳烃体系中同时模拟反应模型和路易斯酸介质以实现选择性C-P键裂解面临着尚未解决的挑战。目前,使用贵金属配合物开发膦酸主链的C-P键活化方案是构建膦催化剂和P中心氧化还原依赖性光电半导体的主要途径,但非贵金属引发的方法仍然难以捉摸。在此,我们报道了通过氧化还原导向的自由基鏻盐过程,Mn(iii)介导的二膦的C-P键活化和分子内环化反应,在温和条件下以良好的区域选择性和底物通用性生成磷杂并苯阳离子或鏻盐。实验和理论计算揭示了新型磷杂并苯存在不寻常的自由基机理和缺电子特性。这些刚性的四元键骨架促进了具有良好可调性和优异效率的多功能荧光。此外,磷杂并苯的对映体富集晶体发出强烈的圆偏振发光(CPL)。值得注意的是,外消旋磷杂并苯的调制CPL是由胆甾相中间相中的手性传递诱导的,显示出超高的CPL不对称因子(+0.51,-0.48)。我们的研究结果为设计朝向手性发光体的发光磷杂并苯和合成前体提供了一种新方法。