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全面了解位阻效应对 Pb 离子配位球的影响和两种发光 Pb(ii)-配位聚合物的光物理性质。

Comprehensively understanding the steric hindrance effect on the coordination sphere of Pb ions and photophysical nature of two luminescent Pb(ii)-coordination polymers.

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering and College of Chemistry and Molecular Engineering, Nanjing Tech University, Nanjing 211816, P. R. China.

American Division, Nanjing Jinling High school, Nanjing 210009, PR China.

出版信息

Dalton Trans. 2019 Sep 28;48(36):13841-13849. doi: 10.1039/c9dt02928a. Epub 2019 Sep 4.

DOI:10.1039/c9dt02928a
PMID:31482896
Abstract

New luminescent Pb(ii)-coordination polymers (Pb(ii)-CPs), [Pb(2-anc)] (1) and [Pb(3-qlc)(HO)] (2) (2-anc = 2-aminonicotinate, 3-qlc = 3-quinolinecarboxylate), were synthesized by a solvothermal reaction and characterized using microanalysis, IR spectrometry and thermogravimetric analysis. Single crystal structure analysis revealed that the Pb ion displays a hemi-directed coordination geometry in 1 and a holo-directed coordination geometry in 2. The difference between the coordination spheres of 1 and 2 is related to the steric hindrance effect of the ligands. A two-dimensional (2D) corrugated layer structure is formed in 1, and the neighboring layers are further extended into a three-dimensional (3D) van der Waals crystal by ππ interactions between the pyridyl rings in the neighboring layers. In contrast, a one-dimensional (1D) coordination polymeric chain is formed in 2, and the adjacent chains are connected in a 2D network by hydrogen bonds. The photophysical properties of 1 and 2 were studied at ambient conditions, disclosing that 1 emits phosphorescence at 548 nm with a millisecond-scale emission lifetime and an absolute quantum yield of 2.2%; 2 emits only blue fluorescence with an absolute quantum yield of 3.5% and nanosecond-scale emission lifetime. The reasons for the difference in the photophysical nature of 1 and 2 are discussed in regards to the electron band structure and density of states analysis.

摘要

新型发光 Pb(ii)-配位聚合物(Pb(ii)-CPs),[Pb(2-anc)](1)和[Pb(3-qlc)(HO)](2)(2-anc = 2-氨基吡啶甲酸盐,3-qlc = 3-喹啉羧酸),通过溶剂热反应合成,并通过微量分析、红外光谱和热重分析进行了表征。单晶结构分析表明,Pb 离子在 1 中显示出半指向配位几何,在 2 中显示出全指向配位几何。1 和 2 的配位球之间的差异与配体的空间位阻效应有关。在 1 中形成二维(2D)波纹层结构,相邻层通过相邻层中吡啶环之间的ππ相互作用进一步扩展为三维(3D)范德华晶体。相比之下,在 2 中形成一维(1D)配位聚合物链,相邻的链通过氢键连接成 2D 网络。在环境条件下研究了 1 和 2 的光物理性质,揭示了 1 在 548nm 处发射磷光,具有毫秒级发射寿命和 2.2%的绝对量子产率;2 仅发射蓝光荧光,具有 3.5%的绝对量子产率和纳秒级发射寿命。讨论了 1 和 2 的光物理性质差异的原因,涉及电子能带结构和态密度分析。

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