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 >In situ synthesis of fluorescent poly(norbornene)/oxazine-1 dye loaded fluoromica hybrids: supramolecular control over dye arrangement
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In situ synthesis of fluorescent poly(norbornene)/oxazine-1 dye loaded fluoromica hybrids: supramolecular control over dye arrangement

机译:荧光聚降冰片烯/恶嗪-1染料负载的氟云母杂种的原位合成:染料排列的超分子控制

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摘要

We report on the in situ synthesis of fluorescent poly(norbornene)/oxazine-l (Oxl) dye loaded fluoromica mineral Somasif (SME) hybrid materials. SME acts as host for supramolecular arrangement of Oxl molecules in their 2D interlayer region. The dye arrangement is easily tuned by modulating the dye loading as well as by competitive intercalation with an ammonium surfactant. The dye molecules bend at most by 30° with respect to the SME layer surface increasing the dye loading up to 69% of the clay cation exchange capacity (CEC). This Oxl state provides accessible interlayer voids which in turn facilitate the entry of polymerizable monomers (i. e., norbornene and ethylene) and the in situ growth of the polymer. In this way a highly processable polymer hybrid, in which the dye molecules are highly oriented in the inorganic framework, is formed. The optical spectroscopy shows unique J-band characteristics along with the Ox1 monomer features. The formation of the J-aggregates is likely induced by the interlayer segregated poorly polar norbornene phase that forces the Oxl molecules to increase the head-to-tail interaction between them. These features strongly encourage the technical application of these materials for fabricating functional devices with unique photoluminescence properties.
机译:我们报告的荧光聚(降冰片烯)/恶嗪-1(Oxl)染料加载氟云母矿物Somasif(SME)杂化材料的原位合成。 SME充当2D层间区域中Oxl分子超分子排列的主体。通过调节染料负载量以及与铵表面活性剂的竞争性插入,可以轻松调节染料排列。染料分子相对于SME层表面最多弯曲30°,从而将染料负载量提高到粘土阳离子交换容量(CEC)的69%。该Oxl状态提供了可进入的层间空隙,其又促进了可聚合单体(即降冰片烯和乙烯)的进入和聚合物的原位生长。以这种方式形成了高度可加工的聚合物杂化物,其中染料分子在无机骨架中高度取向。光学光谱显示了独特的J波段特征以及Ox1单体特征。 J-聚集体的形成很可能是由层间偏析的弱降冰片烯相诱导的,该相迫使Oxl分子增加了它们之间的头尾相互作用。这些特征强烈地鼓励了这些材料在制造具有独特的光致发光特性的功能器件中的技术应用。

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