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Zn/Cd(ii)配位聚合物的可控合成:双发射发光特性以及在不同激发能量下对发射趋势的调控

Controllable synthesis of Zn/Cd(ii) coordination polymers: dual-emissive luminescent properties, and tailoring emission tendency under varying excitation energies.

作者信息

Xing Kai, Fan Ruiqing, Gao Song, Wang Xinming, Du Xi, Wang Ping, Fang Ru, Yang Yulin

机构信息

Department of Chemistry, Harbin Institute of Technology, Harbin 150001, P. R. China.

出版信息

Dalton Trans. 2016 Mar 21;45(11):4863-78. doi: 10.1039/c5dt04759e. Epub 2016 Feb 12.

Abstract

Based on a new asymmetric semi-rigid V-shaped tricarboxylate ligand 3-(2',3'-dicarboxylphenoxy)benzoic acid (H3dpob), a series of zinc/cadmium(ii) coordination polymers, {[Cd(Hdpob)(H2O)3]·H2O}n (1), [Cd(Hdpob)(bib)]n (2), [Zn(Hdpob)(bib)0.5]n (3), {[Cd1.5(dpob)(2,2'-bipy)]·0.5H2O}2n (4) and {[Cd3(dpob)2(4,4'-bipy)2]·3H2O}n (5) [bib = 1,4-bis(1-imidazolyl)benzene; 2,2'-bipy = 2,2'-bipyridine; 4,4'-bipy = 4,4'-bipyridine], have been successfully synthesized via hydro(solvo)thermal reactions. 1 forms a three dimensional (3D) supramolecular structure linked by two types of intermolecular hydrogen bonds based on zig-zag 1D chains, whereas 2 and 3 are obtained with a similar 2D layer structure by the same ligands and further connected into a 3D structure through hydrogen bonds. 4 displays a homochiral 2D structure though two achiral ligands 2,2'-bipy and H3dpob, which contains right-handed helical infinite chains. 5 is a 3D structure containing 2D metal-pyridine layer motifs, which are further pillared by beaded dpob(3-) ligands to complete the structure and form a 6-connected pcu (primitive cubic) net. In DMSO solvent, 1-5 illustrate dual-emission properties but have different low-energy emission (LE) intensities relatively. Extraordinarily, the difference resulting from central metals between 2 and 3 makes the intensity of LE dramatically enhanced and quenched. In this regard, the luminescence of 2 and 3 can be tuned between blue and green regions by varying the excitation light, and the tuning tendency can be tailored with inverse directions. Comparing their tunable-sensitivity to energy quantitatively, the theoretical calculation displays that 3 (4.29%) is little higher than 2 (3.59%) in a relative lower excitation wavelength zone. Meanwhile, five coordination polymers show distinct luminescence thermochromism in the solid state. When the temperature decreases from 298 K to 77 K, the red-shift from blue/green to the pure yellow light region is highlighted. The fantastic and unique luminescence phenomenon not only brings an insight into the synthesis of dual-emissive materials, but helps us to understand the luminescence behavior deeply as well.

摘要

基于一种新型不对称半刚性 V 形三羧酸配体 3-(2',3'-二羧基苯氧基)苯甲酸(H₃dpob),通过水(溶剂)热反应成功合成了一系列锌/镉(ii)配位聚合物,{[Cd(Hdpob)(H₂O)₃]·H₂O}ₙ (1)、[Cd(Hdpob)(bib)]ₙ (2)、[Zn(Hdpob)(bib)₀.₅]ₙ (3)、{[Cd₁.₅(dpob)(2,2'-bipy)]·0.5H₂O}₂ₙ (4) 和 {[Cd₃(dpob)₂(4,4'-bipy)₂]·3H₂O}ₙ (5) [bib = 1,4-双(1-咪唑基)苯;2,2'-bipy = 2,2'-联吡啶;4,4'-bipy = 4,4'-联吡啶]。1 基于之字形一维链通过两种分子间氢键形成三维(3D)超分子结构,而 2 和 3 通过相同配体获得类似的二维层状结构,并通过氢键进一步连接成三维结构。4 通过两个非手性配体 2,2'-bipy 和 H₃dpob 呈现出一种同手性二维结构,其中包含右手螺旋无限链。5 是一种包含二维金属-吡啶层基序的三维结构,这些层基序通过串珠状 dpob(3-)配体进一步支撑以完善结构并形成一个 6 连接的 pcu(原始立方)网络。在 DMSO 溶剂中,1 - 5 表现出双发射特性,但相对具有不同的低能量发射(LE)强度。特别地,2 和 3 之间中心金属的差异使得 LE 强度显著增强和猝灭。在这方面,通过改变激发光,2 和 3 的发光可以在蓝色和绿色区域之间调节,并且调节趋势可以向相反方向定制。定量比较它们对能量的可调敏感性,理论计算表明在相对较低的激发波长区域,3(4.29%)略高于 2(3.59%)。同时,五种配位聚合物在固态下表现出明显的发光热致变色现象。当温度从 298 K 降至 77 K 时,从蓝色/绿色到纯黄色光区域的红移突出。这种奇妙而独特的发光现象不仅为双发射材料的合成提供了见解,也有助于我们深入理解发光行为。

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