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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Tunable solid state fluorescence behavior of a methoxy substituted oligo(phenyleneethynylene): influence of cooling rate and surface crystallization
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Tunable solid state fluorescence behavior of a methoxy substituted oligo(phenyleneethynylene): influence of cooling rate and surface crystallization

机译:甲氧基取代的低聚(亚苯基亚乙炔基)的可调谐固态荧光行为:冷却速率和表面结晶的影响

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摘要

Organic fluorescent materials that enable a control of the emission color based on external influence are highly sought after in optoelectronic applications. A simple molecule, a di-methoxy substituted oligo(phenyleneethynylene), whose emission can be precisely tuned by controlling the cooling rate from the melt (1-13 °C min~(-1) and higher) or by changing the crystallization process on substrate surfaces, is presented. Interestingly, the emission intensity at 397 nm of the melt cooled films was found to be linearly dependent on the diffraction intensity of the (200) preferred orientation of the crystallites. The surrounding medium too seems to influence the emission behavior depending on the thermal diffusivity. Furthermore, the emission is also found to be sensitive to the substrate topography and roughness as a rough surface becomes unconducive to aggregation.
机译:在光电应用中,强烈要求能够基于外部影响来控制发射颜色的有机荧光材料。一个简单的分子,一个二甲氧基取代的低聚(亚苯基亚乙炔基),其发射可以通过控制熔体的冷却速率(1-13°C min〜(-1)和更高)或通过改变晶体上的结晶过程来精确调节介绍了基材表面。有趣的是,发现熔融冷却的膜在397nm处的发射强度与微晶的(200)优选取向的衍射强度线性相关。周围的介质似乎也取决于热扩散率而影响发射行为。此外,还发现该发射对衬底的形貌和粗糙度敏感,因为粗糙的表面变得不利于聚集。

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