Han Guoying, Zhou Yanyan, Yao Yuan, Cheng Zhenyu, Gao Ting, Li Hongfeng, Yan Pengfei
Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education, P. R. China.
Dalton Trans. 2020 Mar 14;49(10):3312-3320. doi: 10.1039/d0dt00062k. Epub 2020 Feb 26.
β-Diketones are one of the most widely used ligands for sensitizing the luminescence of lanthanide complexes due to their excellent sensitization abilities. However, the difficulties in introducing chiral groups to take part in the electronic transitions of conjugated systems limit their application in lanthanide circularly polarized luminescence (CPL) materials. In view of the inherent chirality of the helical structure, herein, a pair of homochiral quadruple-stranded helicates, EuL, is assembled based on chiral bis-β-diketonate ligands, wherein the two point chirality centers in the spacer preorganize the helical conformation of the ligand (3S,4S)/(3R,4R)-3,4-bis(4,4'-bis(4,4,4-trifluoro-1,3-dioxobutyl)phenoxyl)-1-benzylpyrrolidine, L/L. X-ray crystallographic analyses reveal that the R,R configurations of the chiral carbons in the spacer induce the M helical sense of the ligand, while the S,S configurations induce the P helical sense. Through the comprehensive spectral characterization in combination with semiempirical geometry optimization using the Sparkle/RM1 model, it is confirmed that the preorganized ligands successfully control the homochirality of the helicates. Moreover, the mirror-image CD and CPL spectra and NMR measurements confirm the formation of enantiomeric pairs and their diastereopurities in solution. Detailed photophysical and chiroptical characterization studies reveal that the helicates not only exhibit intense circularly polarized luminescence (CPL) with |g| values reaching 0.10, but also show a high luminescence quantum yield of 34%. This study effectively combines the helical chirality of the helicates with the excellent sensitization ability of the β-diketones, providing an effective strategy for the syntheses of chiral lanthanide CPL materials.
β-二酮是用于敏化镧系配合物发光的最广泛使用的配体之一,因其出色的敏化能力。然而,引入手性基团参与共轭体系电子跃迁的困难限制了它们在镧系圆偏振发光(CPL)材料中的应用。鉴于螺旋结构的固有手性,在此,基于手性双β-二酮配体组装了一对同手性四链螺旋配合物EuL,其中间隔基中的两个点手性中心预组织配体(3S,4S)/(3R,4R)-3,4-双(4,4'-双(4,4,4-三氟-1,3-二氧代丁基)苯氧基)-1-苄基吡咯烷,L/L的螺旋构象。X射线晶体学分析表明,间隔基中手性碳的R,R构型诱导配体的M螺旋方向,而S,S构型诱导P螺旋方向。通过结合使用Sparkle/RM1模型的半经验几何优化的综合光谱表征,证实预组织的配体成功控制了螺旋配合物的同手性。此外,镜像CD和CPL光谱以及NMR测量证实了对映体对的形成及其在溶液中的非对映纯度。详细的光物理和手性光学表征研究表明,螺旋配合物不仅表现出强烈的圆偏振发光(CPL),|g|值达到0.10,而且还显示出34%的高发光量子产率。这项研究有效地将螺旋配合物的螺旋手性与β-二酮的出色敏化能力结合起来,为手性镧系CPL材料的合成提供了一种有效策略。