首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Reversible fluorescent switching properties of pyrene-substituted acylhydrazone derivatives toward mechanical force and acid vapor with aggregation-induced emission
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Reversible fluorescent switching properties of pyrene-substituted acylhydrazone derivatives toward mechanical force and acid vapor with aggregation-induced emission

机译:芘取代的酰腙衍生物朝向机械力和酸蒸气的可逆荧光切换性能,具有聚集诱导的发射

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摘要

Four pyrene-substituted acylhydrazone derivatives named PMBH ((E)-N'-(pyren-1-ylmethylene)benzohydrazide), PMPH ((E)-N'-(pyren-1-ylmethylene)picolinohydrazide), PMNH ((E)-N'-(pyren-1-ylmethylene)nicotinohydrazide) and PMIH ((E)-N'-(pyren-1-ylmethylene)isonicotinohydrazide) by functionalizing the phenyl ring and pyridyl ring with pyrene-substituted acylhydrazone moiety have been designed and synthesized, whose properties were investigated. All the four synthesized compounds exhibited favorable aggregation induced emission (AIE) features and reversible mechanofluorochromism (MFC) behaviour. Especially, the intense cyan emission of PMIH changed into orange-yellow emission with a 101 nm red-shift upon grinding. The MFC behavior was associated with the crystalline-amorphous phase transformation between the pristine and ground states, which was confirmed by the investigations of the power X-ray diffraction (PXRD), the differential scanning calorimetry (DSC) and field emission scanning electron microscopy (FESEM). Specifically, PMPH, PMNH and PMIH demonstrated remarkable and reversible acidofluorochromic response due to the presence of free nitrogen atom of pyridyl groups at the terminal position. The chosen approaches showed a new possibility for generating multi-stimuli responsive materials with modulated solid state properties.
机译:四种芘取代的酰肼衍生物,名为PMBH((E)-N' - (Pyren-1-基甲基)苯并肼),PMPH((E)-N' - (Pyren-1-基甲基)吡啶肼),PMNH((E) - 设计了通过官能化苯环和吡啶基环与芘取代的酰肼部分官能化苯基环和吡啶基环((e)-1-基甲基)烟酰肼)和PMIH((e)-n-in' - (pyren -1-基甲基)异辛酰胺。合成,研究其性质。所有四种合成化合物都表现出良好的聚集诱导的发射(AIE)特征和可逆的机械氟色铬(MFC)行为。特别是,在研磨时,PMIH的强烈的青色发射变为橙黄色发射,在研磨时具有101nm的红移。 MFC行为与原始和接地状态之间的结晶 - 无定形相变相关,通过对电源X射线衍射(PXRD),差示扫描量热法(DSC)和场发射扫描电子显微镜( FeSEM)。具体而言,PMPH,PMNH和PMIH由于终端位置处存在吡啶基的游离氮原子,表现出显着和可逆的酰氟圆粒反应。所选择的方法显示出具有用调节固态性质产生多刺激响应材料的新可能性。

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