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Defect-sensitive crystals based on diaminomaleonitrile-functionalized base with aggregation-enhanced emissionf

机译:基于具有聚集增强发射的二氨基马来腈官能化碱的缺陷敏感晶体

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摘要

In this work, we report the synthesis and photophysical studies of a new luminogen, A3MN, a diaminomaleonitrile-functionalized Schiff base. A3MN is aggregation-enhanced emission (AEE)-active: the emission of A3MN is enhanced with the aggregate formation. A3MN also possesses twisted intramolecular charge transfer (TICT) properties, showing noticeable solvatofluorochromism. Interestingly, the crystals of A3MN are nonemissive; the defect areas of the crystal, however, are highly emissive, as confirmed by spectroscopic methods and confocal microscopy. By taking advantage of this defect sensitive feature, a "turn-on" type of mechanofluorochromic material is developed, the emission of which is significantly enhanced under pressure or shear force. The detection limit reaches 0.1 Newton owing to its "turn-on" nature. Such defect-induced emission also renders A3MN sensitive to various kinds of mechanical actions, including hitting, friction, sculpture, and ultrasonic vibration.
机译:在这项工作中,我们报告了一种新型发光剂,A3MN,一种二氨基马来腈官能化的席夫碱的合成和光物理研究。 A3MN具有聚集增强发射(AEE)活性:随着聚集体的形成,A3MN的发射得到增强。 A3MN还具有扭曲的分子内电荷转移(TICT)特性,显示出明显的溶剂化荧光变色现象。有趣的是,A3MN的晶体是无辐射的。然而,晶体的缺陷区域是高发射的,如通过光谱法和共聚焦显微镜所证实的。通过利用这种对缺陷敏感的特征,开发了一种“开启”型的机械氟致变色材料,其在压力或剪切力作用下的发射显着增强。由于其“开启”特性,检测极限达到0.1牛顿。这种由缺陷引起的发射还使A3MN对各种机械动作敏感,包括撞击,摩擦,雕刻和超声振动。

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