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首页> 外文期刊>Journal of physical chemistry letters >Rapid Energy Transfer Enabling Control of Emission Polarization in Perylene Bisimide Donor-Acceptor Triads
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Rapid Energy Transfer Enabling Control of Emission Polarization in Perylene Bisimide Donor-Acceptor Triads

机译:Energy双酰亚胺供体-受体三联体的快速能量转移实现发射极化的控制

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摘要

Materials showing rapid intramolecular energy transfer and polarization switching are of interest for both their fundamental photophysics and potential for use in real world applications. Here, we report two donor acceptor donor triad dyes based on perylene-bisimide subunits, with the long axis of the donors arranged either parallel or perpendicular to that of the central acceptor. We observe rapid energy transfer (<2 ps) and effective polarization control in both dye molecules in solution. A distributed dipole Forster model predicts the excitation energy transfer rate for the linearly arranged triad but severely underestimates it for the orthogonal case. We show that the rapid energy transfer arises from a combination of through-bond coupling and through-space transfer between donor and acceptor units. As they allow energy cascading to an excited state with controllable polarization, these triad dyes show high potential for use in luminescent solar concentrator devices.
机译:显示出快速分子内能量转移和偏振转换的材料不仅具有基本的光物理特性,而且具有在现实世界中应用的潜力。在这里,我们报告基于per-双酰亚胺亚基的两种供体受体供体三元组染料,供体的长轴平行于或垂直于中心受体。我们在溶液中的两个染料分子中观察到快速的能量转移(<2 ps)和有效的极化控制。分布式偶极子Forster模型可以预测线性排列的三重轴的激发能量传输速率,但对于正交情况则严重低估了它。我们表明,快速的能量转移源于施主和受主单元之间的键间耦合和空间传递的结合。由于它们允许能量级联到可控极化的激发态,因此这些三合一染料显示出用于发光太阳能聚光器设备的高潜力。

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