Petrovskii Stanislav K, Paderina Aleksandra V, Sizova Anastasia A, Baranov Andrey Yu, Artem'ev Alexander A, Sizov Vladimir V, Grachova Elena V
Institute of Chemistry, St. Petersburg State University, Universitetskiy pr. 26, 198504 St. Petersburg, Russia.
Dalton Trans. 2020 Oct 6;49(38):13430-13439. doi: 10.1039/d0dt02583f.
A set of alkynyl-tris(2-pyridyl)phosphine Au(i) complexes was synthesized and characterized. Free coordination functions on the ligand environment periphery, namely 'scorpionate' PPy3 and the C[triple bond, length as m-dash]C bond, allowed these ditopic metalloligands to be selectively linked to 1D coordination polymers by reaction with Cu(i), which used both Cu-(N-PPy3) and Cu-(η2-C[triple bond, length as m-dash]C) coordination modes. Single-crystal and powder XRD, NMR, and XPS techniques were used to characterize the coordination polymers obtained. Heterobimetallic Au(i)-Cu(i) coordination polymers demonstrate triplet photoluminescence which was studied by spectroscopic and computational methods to understand the pathway of energy transfer inside the chain of linked chromophore centres. The intriguing feature of the electronic structure of heterobimetallic supramolecular assemblies is the 'long-distance' electronic transition involving PhC2 and PPy3 ligands located at a distance of more than 1 nm from each other. Thus, the assembly of a heterobimetallic coordination polymer from relatively simple 'building blocks' retains the block-wise nature of the electronic structure, but the photophysical properties of the polymer are fundamentally different from the properties of discrete organometallic components.
合成并表征了一组炔基 - 三(2 - 吡啶基)膦金(I)配合物。配体环境外围的自由配位官能团,即“螯合”PPy3和C≡C键,使得这些双齿金属配体通过与Cu(I)反应选择性地连接到一维配位聚合物上,Cu(I)采用了Cu - (N - PPy3)和Cu - (η2 - C≡C)配位模式。使用单晶和粉末XRD、NMR和XPS技术对所得的配位聚合物进行表征。异双金属Au(I) - Cu(I)配位聚合物表现出三线态光致发光,通过光谱和计算方法对其进行研究以了解连接发色团中心链内的能量转移途径。异双金属超分子组装体电子结构的有趣特征是涉及彼此距离超过1 nm的PhC2和PPy3配体的“长距离”电子跃迁。因此,由相对简单的“构建块”组装异双金属配位聚合物保留了电子结构的块状性质,但聚合物的光物理性质与离散有机金属组分的性质有根本不同。