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Bichromophoric compounds with orthogonally and parallelly arranged chromophores separated by rigid spacers.

机译:具有正交和平行排列的发色团的双色荧光化合物,由刚性间隔物隔开。

摘要

Electronic energy transfer (EET) between chromophores is of fundamental importance for many biological processes and optoelectronic devices. However, common models fall short in fully describing the process, especially in bichromophoric model systems with a donor and acceptor connected by a rigid linker providing perpendicular geometries. Herein, we report a novel strategy for preparing bichromophores containing adamantane or 2-(2-adamantylidene)adamantane as rigid spacers, providing a fixed distance between chromophores, and their parallel or perpendicular arrangement without chromophore rotation. New fluorophores were developed and linked via spiroatoms. Bichromophores with identical (blue-blue) or different (blue-red) chromophores were synthesized, either in orthogonal or parallel geometry. These were characterized by absorption/fluorescence spectroscopy, time-resolved fluorescence anisotropy, and fluorescence antibunching measurements. Based on the Förster point-dipole approximation, EET efficiencies were estimated by using geometrical parameters from (time-dependent) density functional calculations. For bichromophores with parallel geometry, the predicted EET efficiencies were near unity and fit the measurements. In spite of estimated values around 0.4 and 0.5, 100 % efficiency was observed also for bichromophores with orthogonal geometry. The new rigid scaffolds presented here open new possibilities for the synthesis of bichormophores with well-defined parallel or perpendicular geometry.
机译:生色团之间的电子能量转移(EET)对于许多生物过程和光电设备至关重要。但是,普通模型在全面描述过程方面存在不足,特别是在双发色模型系统中,供体和受体通过提供垂直几何形状的刚性连接子连接。本文中,我们报道了一种制备含金刚烷或2-(2-金刚烷)金刚烷作为刚性间隔基的双色团的新策略,该双色团在发色团之间提供固定的距离,并且其平行或垂直排列而无发色团旋转。开发了新的荧光团并通过螺旋原子连接。合成具有相同(蓝蓝色)或不同(蓝红色)发色团的双发色团,呈正交或平行几何形状。这些通过吸收/荧光光谱,时间分辨的荧光各向异性和荧光抗聚束测量来表征。基于Förster点-偶极子近似,通过使用(随时间变化)密度泛函计算中的几何参数来估算EET效率。对于具有平行几何结构的双色团,预测的EET效率接近于1并适合测量。尽管估计值约为0.4和0.5,但对于具有正交几何结构的双色团也观察到100%的效率。这里展示的新型刚性支架为合成具有明确的平行或垂直几何结构的双荧光体开辟了新的可能性。

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