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Emission Properties of Artificial Opals Infiltrated with a Heteroaromatic Quadrupolar Dye

机译:杂芳族四极染料浸润的人工蛋白石的发射特性

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Artificial opals are a simple and cheap playground to manipulate the propagation of light. The interest in these kind of photonic crystals is further increased by the possibility to be infiltrated with highly polarisable media like organic semiconductors, i.e. conjugated polymers, push-pull molecules and multipolar chromophores.In this work, we report on the optical properties of polystyrene opals infiltrated with a heteroaromatic quadrupolar derivative endowed with strong nonlinear optical properties (two-photon absorption) in solution. The insertion of tris(ethylene glycol)monomethyl ether chains on the conjugated skeleton allows the molecule to be soluble in water, a non-solvent for polystyrene. This condition is fundamental in order to attempt opal infiltration.Variable angle transmittance and photoluminescence spectroscopy are used to characterize the system. The bathochromic shift of the opal stop band upon immersion in the chromophore solution confirms that the infiltration process easily takes place preserving a dielectric contrast suitable for further investigations.Photoluminescence spectra recorded at different emission angle with respect to the normal of the sample for both the chromophore solution and opals infiltrated with such solution show interesting characteristics. The presence of opal modifies the chromophore emission spectrum by filtering the light for wavelengths corresponding to those of the stop band and according to its dispersion.
机译:人造蛋白石是一种简单而廉价的游乐场,可操纵光的传播。对这种光子晶体的兴趣通过可能被高极化介质(例如共轭聚合物,推挽分子和多极生色团)渗透到有机半导体中而进一步增加。在这项工作中,我们报道了聚苯乙烯蛋白石的光学性质通过杂芳族四极衍生物渗透,该衍生物具有很强的非线性光学性质(双光子吸收)。在共轭骨架上插入三(乙二醇)单甲醚链使分子可溶于水(一种非聚苯乙烯溶剂)。此条件是尝试蛋白石渗透的基础。使用可变角度透射率和光致发光光谱来表征系统。蛋白石阻带浸入生色团溶液后发生红移,证实了渗透过程很容易进行,保留了适合进一步研究的介电对比。两种发色团在相对于样品法线的不同发射角下记录的光致发光光谱溶液和用这种溶液渗透的蛋白石显示出有趣的特征。蛋白石的存在通过对光进行过滤,使之对应于阻带的波长并根据其色散,从而改变了发色团的​​发射光谱。

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