首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Impact of crystalline packing on the mechanochromic luminescence properties of copper based compounds: towards functional coatings
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Impact of crystalline packing on the mechanochromic luminescence properties of copper based compounds: towards functional coatings

机译:晶体堆积对铜基化合物的机械变色发光性能的影响:对功能涂层的影响

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摘要

Mechanochromic luminescent materials exhibit a reversible change of the emission wavelength in response to external mechanical forces. These properties are particularly appealing for applications as memory or sensor devices. In order to rationally design and develop such materials, an in-depth understanding of the mechanochromic mechanisms is highly required. In this work, a comparative study of two copper iodide compounds whose difference lies in the subtle modification of the ligands has been conducted. These two clusters present very close crystalline structures but strikingly different optical properties with only one of them exhibiting luminescence mechanochromic properties. Structural and optical characterizations demonstrate that the two clusters endorse different internal stresses due to slight differences in the crystal packing controlled by the nature of the ligands. The release of these constraints upon mechanical solicitation leads to modification of the intramolecular interactions and is at the origin of the observed mechanochromic properties. Additionally, by taking advantage on the sensitive and highly contrasting mechanochromic properties of the clusters, the preparation and characterization of functional coatings on a glass substrate are also presented. An intense signal is observed upon mechanical solicitation which can be erased upon mild thermal treatment.
机译:机械致变色发光材料响应于外部机械力而呈现出发射波长的可逆变化。这些特性对于作为存储器或传感器设备的应用特别有吸引力。为了合理地设计和开发这种材料,非常需要对机械变色机理的深入了解。在这项工作中,对两种碘化铜化合物进行了比较研究,其区别在于配体的微妙修饰。这两个簇呈现非常紧密的晶体结构,但是具有显着不同的光学性质,其中只有一个表现出发光的机械致变色性质。结构和光学表征表明,由于由配体的性质控制的晶体堆积中的细微差异,两个簇具有不同的内应力。机械约束条件下这些约束的释放导致分子内相互作用的改变,并且是观察到的机械变色特性的起源。另外,通过利用簇的灵敏且高度对比的机械致变色特性,还提出了在玻璃基板上的功能涂层的制备和表征。机械诱导时会观察到强烈的信号,经过温和的热处理可以消除这种信号。

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