首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Using cuprophilicity as a multi-responsive chromophore switching color in response to temperature, mechanical force and solvent vapors
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Using cuprophilicity as a multi-responsive chromophore switching color in response to temperature, mechanical force and solvent vapors

机译:使用嗜酸性作为响应温度,机械力和溶剂蒸气的多响应生色团转换颜色

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摘要

A novel strategy is provided in this paper to design multi-stimuli-responsive luminescent materials by taking a multi-responsive chromophore which responds to multiple environmental stimuli instead of constructing multi-chromophore systems. Herein, we have successfully prepared a tri-stimuli-responsive luminescent material, [Cu4l4(4-dpda)4] (1), with reversible and independent thermochromism, mechanochromism and vapochromism simultaneously by applying cuprophilic interactions as a multi-responsive chromophore. The organic ligand 4-dpda is chosen to amplify the perturbation toward metallophilic interations for steric hindrance, and many of the molecular interactions of its multi-phenyl moieties are sensitive to tiny disturbances and will translate the effects to the CU4I4 core of compound 1. Structural and spectrographic investigations show that the changes in luminescence result from the disturbed cuprophilic interactions.
机译:本文提供了一种新颖的策略来设计多刺激响应的发光材料,方法是采用对多种环境刺激有响应的多响应发色团,而不是构建多发色团系统。在这里,我们已经成功地制备了一种三刺激响应发光材料[Cu4l4(4-dpda)4](1),同时通过将嗜铜相互作用作为多响应发色团同时具有可逆和独立的热致变色,机械致变色和vapochromism。选择有机配体4-dpda可放大对位错的亲金属相互作用的干扰,并且其多苯基部分的许多分子相互作用对微小干扰敏感,并将其作用转化为化合物1的CU4I4核心。光谱研究表明,发光的变化是由嗜铜相互作用引起的。

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