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芳基取代二螺[芴-茚并]氟苯异构体通过构象可控的分子内激基缔合物形成实现紫到蓝可调谐发射。

Violet-to-blue tunable emission of aryl-substituted dispirofluorene-indenofluorene isomers by conformationally-controllable intramolecular excimer formation.

机构信息

Université de Rennes 1, UMR CNRS 6226, Sciences Chimiques de Rennes, Bat 10C, Campus de Beaulieu, 35042 Rennes cedex, France.

出版信息

Chemistry. 2011 Sep 5;17(37):10272-87. doi: 10.1002/chem.201100971. Epub 2011 Aug 8.

Abstract

Two series of DiSpiroFluorene-IndenoFluorene (DSF-IF) positional isomers, namely dispiro[2,7-diarylfluorene-9',6,9'',12-indeno[1,2-b]fluorenes], (1,2-b)-DSF-IFs 1 and dispiro[2,7-diarylfluorene-9',6,9'',12-indeno[2,1-a]fluorenes], (2,1-a)-DSF-IFs 2 have been synthesized. These violet-to-blue fluorescent emitters possess a 3π-2spiro architecture, which combines via two spiro links two different indenofluorene cores, that is, (1,2-b)-IF or (2,1-a)-IF and 2,7-substituted-diaryl-fluorene units. Due to their different geometric profiles, the two families of positional isomers present drastically different properties. The marked difference observed between the properties of (1,2-b)-DSF-IF (1) and (2,1-a)-DSF-IF (2) is discussed in terms of intramolecular π-π interactions occurring in (2,1-a)-DSF-IF (2) leading to conformationally-controllable intramolecular excimer formation. Indeed, the original geometry of the (2,1-a)-DSF-IF (2) family, with face-to-face "aryl-fluorene-aryl" moieties, leads to remarkable excimer emission through intramolecular π-π interactions in the excited state. Furthermore, the emission wavelengths can be gradually modulated by the control of the steric hindrance between the adjacent substituted phenyl rings. Thus, through a comparative and detailed study of the (1)H NMR, electrochemical and photophysical properties of DSF-IFs 1 and 2, we have evidenced the intramolecular π-π interactions occurring between the two "aryl-fluorene-aryl" moieties in the ground state and in the excited state. These properties have been finally correlated to the spectacular conformational change modeled by density functional theory (DFT) calculations. Indeed, the two "aryl-fluorene-aryl" moieties switch from a staggered conformation in the ground state to an eclipsed conformation in the first excited state.

摘要

两个系列的 DiSpiroFluorene-IndenoFluorene (DSF-IF) 位置异构体,即双螺[2,7-二芳基芴-9',6,9'',12-茚并[1,2-b]芴](1,2-b)-DSF-IFs 1 和双螺[2,7-二芳基芴-9',6,9'',12-茚并[2,1-a]芴](2,1-a)-DSF-IFs 2,已经被合成。这些紫到蓝的荧光发射体具有 3π-2 螺结构,通过两个螺键将两个不同的茚并芴核(即 1,2-b-IF 或 2,1-a-IF 和 2,7-取代二芳基芴单元)结合在一起。由于它们具有不同的几何形状,这两个位置异构体系列呈现出截然不同的性质。(1,2-b)-DSF-IF(1)和(2,1-a)-DSF-IF(2)之间观察到的性质差异很大,这可以用(2,1-a)-DSF-IF(2)中发生的分子内 π-π 相互作用来解释,这些相互作用导致构象可控的分子内激基形成。实际上,(2,1-a)-DSF-IF(2)家族的原始几何形状,具有面对面的“芳基-芴-芳基”部分,通过在激发态下的分子内 π-π 相互作用,导致显著的激基发射。此外,通过控制相邻取代苯基环之间的空间位阻,可以逐渐调节发射波长。因此,通过对 DSF-IFs 1 和 2 的 1H NMR、电化学和光物理性质进行比较和详细研究,我们已经证明了在基态和激发态下,两个“芳基-芴-芳基”部分之间存在分子内 π-π 相互作用。这些性质最终与密度泛函理论(DFT)计算模拟的惊人构象变化相关联。实际上,两个“芳基-芴-芳基”部分从基态的交错构象转变为第一激发态的重叠构象。

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