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Mechanoresponsive Luminescent Molecular Assemblies: An Emerging Class of Materials

机译:机械响应发光分子组件:新兴的一类材料。

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摘要

The possibility to change the molecular assembled structures of organic and organometallic materials through mechanical stimulation is emerging as a general and powerful concept for the design of functional materials. In particular, the photophysical properties such as photoluminescence color, quantum yield, and emission lifetime of organic and organometallic fluorophores can significantly depend on the molecular packing, enabling the development of molecular materials with mechanoresponsive luminescence characteristics. Indeed, an increasing number of studies have shown in recent years that mechanical force can be utilized to change the molecular arrangement, and thereby the optical response, of luminescent molecular assemblies of π-conjugated organic or organometallic molecules. Here, the development of such mechanoresponsive luminescent (MRL) molecular assemblies consisting of organic or organometallic molecules is reviewed and emerging trends in this research field are summarized. After a brief introduction of mechanoresponsive luminescence observed in molecular assemblies, the concept of “luminescent molecular domino” is introduced, before molecular materials that show turn-on/off of photoluminescence in response to mechanical stimulation are reviewed. Mechanically stimulated multicolor changes and water-soluble MRL materials are also highlighted and approaches that combine the concept of MRL molecular assemblies with other materials types are presented in the last part of this progress report.
机译:通过机械刺激改变有机和有机金属材料的分子组装结构的可能性正在成为功能材料设计的一个普遍而有力的概念。特别地,诸如有机和有机金属荧光团的光致发光颜色,量子产率以及发射寿命之类的光物理性质可以极大地取决于分子堆积,从而使得能够开发具有机械响应性发光特性的分子材料。实际上,近年来越来越多的研究表明,可以利用机械力来改变π共轭有机或有机金属分子的发光分子组件的分子排列,从而改变其光学响应。在此,回顾了由有机或有机金属分子组成的这种机械响应性发光(MRL)分子组件的发展,并总结了该研究领域中的新兴趋势。在简要介绍了分子组装体中观察到的机械响应发光之后,引入了“发光分子多米诺”的概念,然后对响应机械刺激而显示开/关光致发光的分子材料进行了综述。机械激发的多色变化和水溶性MRL材料也得到了重点介绍,该进展报告的最后部分介绍了将MRL分子组装体的概念与其他材料类型相结合的方法。

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