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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Contrasting Solid-State Fluorescence of Diynes with Small and Large Aryl Substituents: Crystal Packing Dependence and Stimuli-Responsive Fluorescence Switching
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Contrasting Solid-State Fluorescence of Diynes with Small and Large Aryl Substituents: Crystal Packing Dependence and Stimuli-Responsive Fluorescence Switching

机译:不同大小的芳基取代基与二炔的固态荧光对比:晶体堆积依赖性和刺激响应性荧光转换。

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There has been a significant current interest in solid state luminescence of organic molecules and their stimuli responsive fluorescence switching behavior. Although small organic derivatives with olefinic, acetylenic, phenylenevinylenic, phenyleneethynylenic spacers are widely documented as solid state emitters in the literature, the solid state photophysics of organic derivatives with "butadiyne" spacer still remains unexplored. We provide detailed investigation on the solid state fluorescence properties of a series of butadiynyl fluorophores. Replacement of a phenyl ring, which is at periphery of the butadiyne bridge, with a large moiety such as pyrenyl group furnishes contrasting emissions in the solid state. While the butadiyne bridged phenyl derivatives show a blue shift of emission maxima in the solid powder with respect to monomer spectra in solution state, the butadiyne bridged pyrenyl derivatives exhibit a red shift in the solid state. The blue shift of the emission maxima of the butadiyne bridged phenyl derivatives in the solid powder is attributed to allowed transition in aggregates with nearly parallel transition dipoles. On the other hand, formation of pyrenyl excimer accounts for the excitonic red shift of the butadiyne bridged pyrenyl derivatives in the solid powder. In addition to that, the solid state fluorescence of the pyrenyl analogues is reversibly switched between two aggregate forms through external heating and rubbing stimuli.
机译:当前,有机分子的固态发光及其刺激响应的荧光转换行为引起了人们的极大兴趣。尽管在文献中广泛记录了具有烯烃,炔属,苯撑乙烯基,苯撑炔基间隔基的小的有机衍生物作为固态发射体,但仍未探索具有“丁二炔”间隔基的有机衍生物的固态光物理性质。我们提供了一系列丁二炔基荧光团的固态荧光特性的详细研究。用大部分例如as基取代在丁二炔桥的外围的苯环,提供了固态的对比发射。相对于溶液状态下的单体光谱,丁二炔桥联的苯基衍生物在固体粉末中显示出最大发射的蓝移,而丁二炔桥联的pyr烯衍生物在固态下显示出红移。固体粉末中丁二炔桥联的苯基衍生物的最大发射峰的蓝移归因于聚集体中具有几乎平行的跃迁偶极子的跃迁。另一方面,of基准分子的形成解释了固体粉末中丁二炔桥联的enyl基衍生物的激子红移。除此之外,through烯类似物的固态荧光通过外部加热和摩擦刺激在两种聚集体形式之间可逆地切换。

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