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首页> 外文期刊>Dyes and Pigments >Aggregation-induced emission enhancement (AIEE)-active Pt(II) metallomesogens as dyes sensitive to Hg2+ and dopant agents to develop stimuli-responsive luminescent polymer materials
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Aggregation-induced emission enhancement (AIEE)-active Pt(II) metallomesogens as dyes sensitive to Hg2+ and dopant agents to develop stimuli-responsive luminescent polymer materials

机译:聚集诱导的发射增强(AIEE) - 活性Pt(II)金属聚糖作为染料对Hg2 +和掺杂剂的染料,以开发刺激响应的发光聚合物材料

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摘要

The luminescence properties of Pt(II) compounds can be modulated by controlling the assembly of their molecules both in the solution and in the solid state. This fact constitutes a powerful tool for developing materials with stimuli-responsive luminescence properties. Herein, we describe the self-assembly behaviour of several series of Pt(II) metallomesogens in two different media upon controlled conditions. On the one hand, we explore the ability of several metal cations to induce the formation of Pt center dot center dot center dot Pt aggregates in solution, with the main goal of enhancing the phosphorescent emission of these compounds, On the other hand, since these compounds exhibit liquid crystalline mesophases and the temperature can control the aggregation, we have fabricated Pt(II) compound-doped polymer films and silicone membranes that show stimuli-responsive luminescent properties. In both cases, the interactions between the Pt(II) compounds and the metal cations, or the polymer matrices, play a key role in the aggregation-induced emission enhancement (AIEE) behaviour of the dyes. The effects of the alkyl chain length, the molecular asymmetry, and the nature of the ligands in the establishment of these interactions are also evaluated.
机译:PT(II)化合物的发光性能可以通过在溶液和固态中控制其分子的组装来调节。这一事实构成了一种强大的工具,用于开发具有刺激响应性发光性质的材料。在此,在受控条件下,我们描述了两种不同介质中几种Pt(II)金属聚糖的自组装行为。一方面,我们探讨了几种金属阳离子在解决方案中诱导Pt中心点中心点中心点Pt聚集体的能力,另一方面,提高这些化合物的磷光排放的主要目标化合物表现出液晶中间蛋白酶和温度可以控制聚集,我们已经制造了Pt(ii)化合物掺杂的聚合物膜和硅氧烷膜,其显示刺激响应性发光性能。在这两种情况下,Pt(II)化合物和金属阳离子之间的相互作用或聚合物基质在染料的聚集诱导的发射增强(AIEE)行为中起着关键作用。还评估了烷基链长度,分子不对称性和配体在建立这些相互作用中的作用。

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