首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Solid-state fluorescence properties and reversible piezochromic luminescence of aggregation-induced emission-active 9,10-bis[(9,9-dialkylfluorene-2-yl)vinyl] anthracenes
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Solid-state fluorescence properties and reversible piezochromic luminescence of aggregation-induced emission-active 9,10-bis[(9,9-dialkylfluorene-2-yl)vinyl] anthracenes

机译:聚集诱导的发射活性9,10-双[(9,9-二烷基芴-2-基)乙烯基]蒽的固态荧光性质和可逆压致变色发光

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In this work, we have synthesized 9,10-bis[(9,9-dialkylfluorene-2-yl)vinyi]anthracene derivatives (FLA-Cn) with propyl, pentyl, and dodecyl side chains to investigate their fluorescence properties. The results show that FLA-Cn exhibit not only an aggregation-induced emission effect but also reversible piezofluorochromic (PFC) behaviour. Interestingly, the fluorescence emission and grinding-induced spectral shifts (Δλ_(PFC)) of FLA-Cn solids are alkyl length-dependent: the longer alkyl-containing FLA-Cn solids show more blue-shifted emission and larger Δλ_(PFC). Moreover, the fluorescence emission of ground FLA-C12 solid can recover spontaneously at room temperature. Powder wide-angle X-ray diffraction and differential scanning calorimetry experiments reveal that the transformation between crystalline and amorphous states under various external stimuli is responsible for the PFC behaviour, and the spontaneous recovering emission of amorphized FLA-C12 solid is ascribed to its low cold-crystallization temperature. This work demonstrates once again the accessibility of tuning the solid-state optical properties of organic fluorophores by combining the simple alternation of molecular chemical structure and the physical change of aggregate morphology under external stimuli.
机译:在这项工作中,我们合成了带有丙基,戊基和十二烷基侧链的9,10-双[(9,9-二烷基芴-2-基)乙烯基]蒽衍生物(FLA-Cn),以研究其荧光性质。结果表明,FLA-Cn不仅表现出聚集诱导的发射效应,而且表现出可逆的压电氟致变色(PFC)行为。有趣的是,FLA-Cn固体的荧光发射和磨削引起的光谱位移(Δλ_(PFC))取决于烷基长度:含烷基更长的FLA-Cn固体显示出更多的蓝移发射和较大的Δλ_(PFC)。此外,研磨的FLA-C12固体的荧光发射可以在室温下自发恢复。粉末广角X射线衍射和差示扫描量热法实验表明,在各种外部刺激下晶态和非晶态之间的转变是PFC行为的原因,非晶态FLA-C12固体的自发恢复发射归因于其低冷-结晶温度。这项工作再次证明了通过结合分子化学结构的简单交替和外部刺激下聚集体形态的物理变化来调节有机荧光团的固态光学性质的可及性。

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