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多形体碘化铜簇合物:对机械变色发光性能的深入了解。

Polymorphic copper iodide clusters: insights into the mechanochromic luminescence properties.

机构信息

Laboratoire de Physique de la Matière Condensée (PMC), CNRS - Ecole Polytechnique, 91128 Palaiseau Cedex, France.

出版信息

J Am Chem Soc. 2014 Aug 13;136(32):11311-20. doi: 10.1021/ja500247b. Epub 2014 Jul 30.

Abstract

An in-depth study of mechanochromic and thermochromic luminescent copper iodide clusters exhibiting structural polymorphism is reported and gives new insights into the origin of the mechanochromic luminescence properties. The two different crystalline polymorphs exhibit distinct luminescence properties with one being green emissive and the other one being yellow emissive. Upon mechanical grinding, only one of the polymorphs exhibits great modification of its emission from green to yellow. Interestingly, the photophysical properties of the resulting partially amorphous crushed compound are closed to those of the other yellow polymorph. Comparative structural and optical analyses of the different phases including a solution of clusters permit us to establish a correlation between the Cu-Cu bond distances and the luminescence properties. In addition, the local structure of the [Cu4I4P4] cluster cores has been probed by (31)P and (65)Cu solid-state NMR analysis, which readily indicates that the grinding process modifies the phosphorus and copper atoms environments. The mechanochromic phenomenon is thus explained by the disruption of the crystal packing within intermolecular interactions inducing shortening of the Cu-Cu bond distances in the [Cu4I4] cluster core and eventually modification of the emissive state. These results definitely establish the role of cuprophilic interactions in the mechanochromism of copper iodide clusters. More generally, this study constitutes a step further into the understanding of the mechanism involved in the mechanochromic luminescent properties of metal-based compounds.

摘要

本文深入研究了结构多态性的机械变色和热致变色发光碘化铜簇,为机械变色发光性能的起源提供了新的见解。两种不同的结晶多晶型物表现出明显不同的发光特性,一种为绿色发光,另一种为黄色发光。在机械研磨过程中,只有一种多晶型物的发射从绿色发生显著变化,变为黄色。有趣的是,所得部分非晶粉碎化合物的光物理性质与另一种黄色多晶型物非常接近。对不同相的结构和光学分析,包括簇的溶液,使我们能够建立 Cu-Cu 键距离与发光性能之间的相关性。此外,通过(31)P 和(65)Cu 固态 NMR 分析探测了[Cu4I4P4] 簇核的局部结构,这很容易表明研磨过程改变了磷和铜原子的环境。因此,机械变色现象可以通过分子间相互作用内的晶体堆积破坏来解释,这导致[Cu4I4] 簇核内的 Cu-Cu 键距离缩短,并最终改变发光状态。这些结果明确确定了亲铜相互作用在碘化铜簇机械变色中的作用。更一般地说,这项研究进一步深入了解了金属基化合物机械变色发光性能所涉及的机制。

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