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Modulation of Aggregation-Induced Emission and Electroluminescence of Silole Derivatives by a Covalent Bonding Pattern

机译:通过共价键模式调节聚集诱导的硅酮衍生物的发射和电致发光

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摘要

The deciphering of structure-property relationships is of high importance to rational design of functional molecules and to explore their potential applications. In this work, a series of silole derivatives substituted with benzo[b]thiophene (BT) at the 2,5-positions of the silole ring are synthesized and characterized. The experimental investigation reveals that the covalent bonding through the 2-position of BT (2-BT) with silole ring allows a better conjugation of the backbone than that achieved though the 5-position of BT (5-BT), and results in totally different emission behaviors. The silole derivatives with 5-BT groups are weakly fluorescent in solutions, but are induced to emit intensely in aggregates, presenting excellent aggregation-induced emission (AIE) characteristics. Those with 2-BT groups can fluoresce more strongly in solutions, but no obvious emission enhancements are found in aggregates, suggesting they are not AIE-active. Theoretical calculations disclose that the good conjugation lowers the rotational motions of BT groups, which enables the molecules to emit more efficiently in solutions. But the well-conjugated planar backbone is prone to form strong intermoelcular interactions in aggregates, which decreases the emission efficiency. Non-doped organic light-emitting diodes (OLEDs) are fabricated by using these siloles as emitters. AIE-active silole derivatives show much better elecroluminescence properties than those without the AIE characterisic, demonstrating the advantage of AIE-active emitters in OLED applications.
机译:结构-属性关系的破译对于功能分子的合理设计和探索其潜在应用非常重要。在这项工作中,合成并表征了一系列在硅烷环的2,5-位被苯并[b]噻吩(BT)取代的硅烷衍生物。实验研究表明,通过BT(2-BT)与硅环的2位共价键结合比通过BT(5-BT)5位实现的骨架键合更好。不同的排放行为。具有5-BT基团的甲硅烷基衍生物在溶液中的荧光较弱,但被诱导以聚集体的形式强烈发射,表现出出色的聚集诱导发射(AIE)特性。具有2-BT基团的那些可以在溶液中发出更强的荧光,但是在聚集体中未发现明显的发射增强,表明它们不具有AIE活性。理论计算表明,良好的共轭可降低BT基团的旋转运动,从而使分子在溶液中更有效地发射。但是,高度共轭的平面骨架易于在聚集体中形成强烈的分子间相互作用,从而降低了发射效率。通过使用这些小柱作为发射极来制造非掺杂有机发光二极管(OLED)。与没有AIE特性的那些相比,AIE活性硅油衍生物显示出更好的电致发光性能,这证明了AIE活性发射体在OLED应用中的优势。

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