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Short contacts between chains enhancing luminescence quantum yields and carrier mobilities in conjugated copolymers

机译:链之间的短接触增强了共轭共聚物的发光量子产率和载流子迁移率

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摘要

Efficient conjugated polymer optoelectronic devices benefit from concomitantly high luminescence and high charge carrier mobility. This is difficult to achieve, as interchain interactions, which are needed to ensure efficient charge transport, tend also to reduce radiative recombination and lead to solid-state quenching effects. Many studies detail strategies for reducing these interactions to increase luminescence, or modifying chain packing motifs to improve percolation charge transport; however achieving these properties together has proved elusive. Here, we show that properly designed amorphous donor-alt-acceptor conjugated polymers can circumvent this problem; combining a tuneable energy gap, fast radiative recombination rates and luminescence quantum efficiencies >15% with high carrier mobilities exceeding 2.4 cm2/Vs. We use photoluminescence from exciton states pinned to close-crossing points to study the interplay between mobility and luminescence. These materials show promise towards realising advanced optoelectronic devices based on conjugated polymers, including electrically-driven polymer lasers.
机译:高效的共轭聚合物光电器件受益于高发光和高载流子迁移率。这很难实现,因为确保有效电荷传输所需的链间相互作用也往往会减少辐射重组并导致固态猝灭作用。许多研究详述了减少这些相互作用以增加发光或改变链堆积图案以改善渗滤电荷传输的策略。然而,事实证明,同时实现这些特性是遥不可及的。在这里,我们表明适当设计的无定形供体-alt-受体共轭聚合物可以解决这个问题。结合了可调节的能隙,快速的辐射复合率和> 15%的发光量子效率以及超过2.4μcm 2 / Vs的高载流子迁移率。我们使用固定在交叉点上的激子态的光致发光来研究迁移率和发光之间的相互作用。这些材料显示出有望实现基于共轭聚合物的先进光电器件,包括电驱动的聚合物激光器。

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