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首页> 外文期刊>Inorganica Chimica Acta >Photophysical studies of organostannoxane supported hexafluorophore assemblies
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Photophysical studies of organostannoxane supported hexafluorophore assemblies

机译:子系统支持的六氟聚集体的光药研究

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The condensation reaction between n-butylstannoic acid and ArCOOH (Ar = 1-naphthyl-CH2 (1), 9-anthracenyl (2), 9-xanthenyl (3), 1-pyrenyl-(CH2)3 (4), 1-pyrenyl (5)) afforded hexameric organostannoxanes [n-BuSn(O) (O2CAr)]6 in high yield. The molecular structures of compounds 2 and 3 were confirmed by single crystal X-ray diffraction analysis. These compounds possess a drum-like structure and each molecule is attached with six fluorophores through carboxylate functionality. 119Sn NMR and MALDI-TOF analyses suggest that the compounds 1, 4, and 5 also belong to the family of organotin drum structure. There are also various intra- and intermolecular interaction between the fluorophores. In particular, compound 2 shows a strong intramolecular hydrogen bond (C?H????? 2.489 ?) between two anthracene moieties. However, such interaction is weaker in 3. The absorption spectra of 1?5 indicate that ?max was very slightly red-shifted with respect to their fluorophore carboxylic acid. Fluorescence measurements reveal that these molecules are good blue emitters in solution state but red-shifted in the solid-state. Quantum yield calculation shows that emission efficiencies decreased for smaller spacers between fluorophore and stannoxane core. We have carried out thermal studies for all compounds. These suggest that the compounds are robust and stable until about 300 ?C. Interestingly, we have demonstrated the synthesis of SnO2 from the hexameric organotin drum 3 by heating in the temperature range 600?-1200?.
机译:正丁基番荔枝酸与ArCOOH(Ar=1-萘基-CH2(1),9-蒽基(2),9-蒽基(3),1-芘基-(CH2)3(4),1-芘基(5))之间的缩合反应高产率地提供了六聚有机锡氧烷[n-BuSn(O)(O2CAr)]6。化合物2和3的分子结构经单晶X射线衍射分析证实。这些化合物具有鼓状结构,每个分子通过羧酸盐功能性连接六个荧光团。119Sn NMR和MALDI-TOF分析表明,化合物1、4和5也属于有机锡鼓状结构家族。荧光团之间也存在各种分子内和分子间的相互作用。特别是,化合物2显示出强大的分子内氢键(C?H?2.489?)在两个蒽部分之间。然而,这种相互作用在3中较弱。1?5.这是什么意思?max相对于其荧光团羧酸发生了非常轻微的红移。荧光测量表明,这些分子在溶液状态下是良好的蓝色发射体,但在固态下是红移的。量子产率计算表明,荧光团和锡氧烷核之间的间距越小,发射效率越低。我们对所有化合物进行了热研究。这表明这些化合物在大约300年前是稳定的?C.有趣的是,我们已经证明了通过在600°C的温度范围内加热,从六聚有机锡桶3合成SnO2-1200?.

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