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由Cu(I) π配位导向的Au(I)-双乙炔链的磷光金属结

Phosphorescent metallaknots of Au(I)-bis(acetylide) strands directed by Cu(I) π-coordination.

作者信息

Huang Ya-Zi, Yang Raorao, Zhang Liang, Chen Zhong-Ning

机构信息

State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, P. R. China.

Fujian College, University of Chinese Academy of Sciences, Beijing 100039, P. R. China.

出版信息

Proc Natl Acad Sci U S A. 2024 Sep 24;121(39):e2403721121. doi: 10.1073/pnas.2403721121. Epub 2024 Sep 19.

Abstract

Knots containing metal atoms as part of their continuous strand backbone are termed as metallaknots. While several metallaknots have been synthesized through one-pot self-assembly, the designed synthesis of metallaknots by controlling the arrangement of entanglements and strands connectivity remains unexplored. Here, we report the synthesis of metallaknots composed with Au(I)-bis(acetylide) linkages and templated by Cu(I) ions. Varying the ratio of the building blocks results in the switchable formation of two trefoil knots with different stoichiometries and symmetries ( or ) and an entangled metalla-complex. While the entangled complex formed serendipitously, the strand ends can be subsequently linked through coordinative closure to generate a 4 metallaknot in a highly designable fashion. The comparable structural characteristics of resulting metalla-complexes allow us to probe the correlations between their topologies and photophysical properties, showing the backbone rigidity of knots endows complexes with excellent phosphorescent properties. This strategy, in conjunction with the coordinative closure approach, provides a straightforward route for the formation of highly phosphorescent metallaknots that were previously challenging to access.

摘要

其连续链骨架包含金属原子的结被称为金属结。虽然已经通过一锅法自组装合成了几种金属结,但通过控制缠结排列和链连接性来设计合成金属结仍未得到探索。在此,我们报告了由金(I)-双(乙炔基)键组成并以铜(I)离子为模板的金属结的合成。改变构建块的比例会导致形成具有不同化学计量和对称性的两种三叶结(或 )以及一种缠结的金属配合物的可切换形成。虽然缠结配合物是偶然形成的,但随后链端可以通过配位封闭连接起来,以高度可设计的方式生成一个四环金属结。所得金属配合物具有可比的结构特征,这使我们能够探究它们的拓扑结构与光物理性质之间的相关性,表明结的主链刚性赋予配合物优异的磷光性质。这种策略与配位封闭方法相结合,为形成以前难以获得的高磷光金属结提供了一条直接途径。

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