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解锁同号圆偏振发光:溶剂对九配位手性铕(III)配合物光谱形式和外消旋动力学的影响

Unlocking same-sign CPL: solvent effects on spectral form and racemisation kinetics in nine-coordinate chiral europium(III) complexes.

作者信息

De Rosa Davide F, Starck Matthieu, Parker David, Pal Robert

机构信息

Department of Chemistry, Durham University, South Road, Durham, DH1 3LE, UK.

Current address: Department of Chemistry, Hong Kong Baptist University, Kowloon Tong, Hong Kong.

出版信息

Chemistry. 2024 Feb 12;30(9):e202303227. doi: 10.1002/chem.202303227. Epub 2023 Dec 20.

Abstract

Understanding the factors that shape the circularly polarised luminescence (CPL) emission profiles of europium(III)-based CPL emitters to have specific sign properties, e. g. monosignate individual CPL transitions, is key to design novel complexes for applications ranging from advanced security inks to bio-probes for live cell imaging. In order to correlate structure and spectral characteristics, a photophysical and kinetic investigation has been conducted on a series of coordinatively saturated nine-coordinate europium(III) systems based on 1,4,7-triazacyclononane. We highlight that lanthanide emission is sensitive to changes in the ligand field by showing the linear dependence of total emission intensity ratios as a function of solvent polarity, for europium(III) complexes displaying an internal charge transfer (ICT) excited state. This sensitivity increases by a factor of 20 when studying changes in CPL spectra, rendering these complexes accurate probes of local polarity. Solvent polarity, solvent-specific effects, and the nature of the chromophores' coordinating donor atoms strongly influence the kinetic stability of europium(III) complexes with respect to enantiomer interconversion. Notably, we show that the choice of donor groups to coordinating to europium(III) and the nature and polarity of the solvent affects the rate of racemisation, leading to systems with very long half-lives at room temperature in non-polar media.

摘要

了解影响基于铕(III)的圆偏振发光(CPL)发射体的圆偏振发光(CPL)发射谱以具有特定符号特性(例如单符号的单个CPL跃迁)的因素,对于设计从先进安全油墨到活细胞成像生物探针等各种应用的新型配合物至关重要。为了关联结构和光谱特征,我们对一系列基于1,4,7-三氮杂环壬烷的配位饱和九配位铕(III)体系进行了光物理和动力学研究。我们强调,对于显示内电荷转移(ICT)激发态的铕(III)配合物,通过显示总发射强度比与溶剂极性的函数关系的线性依赖性,镧系元素发射对配体场的变化敏感。在研究CPL光谱变化时,这种敏感性增加了20倍,使这些配合物成为局部极性的精确探针。溶剂极性、溶剂特异性效应以及发色团配位供体原子的性质强烈影响铕(III)配合物对映体互变的动力学稳定性。值得注意的是,我们表明与铕(III)配位的供体基团的选择以及溶剂的性质和极性会影响外消旋化速率,从而导致在非极性介质中室温下半衰期很长的体系。

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