以二羧酸酯和辅助性1,4-双(吡啶-4-甲基)哌嗪配体为配体设计和合成多种Cd2+/Zn2+/Cu2+配位聚合物,并进行发光和Hirshfeld表面分析。

IF 1.3 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Nanhao Jin, Yuqi Liu, Siyu Dai, Yanghua Li, Xinying Wang, Yue Zhao, Xiaoming Liu, Han Chen, Huilong Luo, Wei Li
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引用次数: 0

摘要

以Cd2+/Zn2+/Cu2+金属盐为节点,通过水热法合成了四种新型配位聚合物,包括1D、2D和3D结构。这些聚合物是由四种不同的二羧酸配体金刚烷酸-1,3-二羧酸(H2adc)、戊二酸(H2glu)、5-羟基间苯二甲酸(H2hip)和富马酸(H2fum)与辅助配体[1,4-双(吡啶-4-甲基)哌嗪(bpmp)]自组装而成的。对应的公式为[Cd3(adc)2(bpmp)Cl2(H2O)2]n (1), {[Cd2(glu)2(bpmp)2(H2O)2]·8H2O·2CH3OH}n (2), [Zn(hip)(bpmp)(H2O)]n(3)和[Cu(fm)(bpmp)(H2O)2]n(4)]。x射线单晶衍射研究表明,配合物1中的Cd2+中心均采用六坐标模式,但有两个不同的单位{CdO2N2Cl2}和{CuO5Cl}。复体1的三维网络可以简化为点符号为(3·42·5·62)4(32·62·72·88·10)的双节点(4.6)连接的底层网络。配合物2中的每个Cd2+阳离子采用七坐标{CdO5N2}中心,形成不对称的五边形双锥体配位。它的堆叠结构是由二维超分子层之间的氢键相互作用形成的,相邻层呈镜像对称。配合物3中的每个Zn2+离子显示一个{ZnO3N}四坐标单位。其层叠结构是由一维[Zn(hip)(bpmp)(H2O)]n链通过氢键连接而成。另一方面,配合物4具有Jahn-Teller畸变{CuO4N2}八面体配位。随后,研究了这些配合物的热稳定性。采用固体荧光光谱法对配合物1、2和3进行了分析。此外,对复合体3进行了Hirshfeld表面分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design and synthesis of diverse Cd<sup>2+</sup>/Zn<sup>2+</sup>/Cu<sup>2+</sup> coordination polymers tuned by dicarboxylate and auxiliary 1,4-bis(pyridin-4-ylmethyl)piperazine ligands with luminescence and Hirshfeld surface analyses.

Design and synthesis of diverse Cd2+/Zn2+/Cu2+ coordination polymers tuned by dicarboxylate and auxiliary 1,4-bis(pyridin-4-ylmethyl)piperazine ligands with luminescence and Hirshfeld surface analyses.

Four new coordination polymers, including 1D, 2D and 3D structures, were synthesized via a hydrothermal method using Cd2+/Zn2+/Cu2+ metal salts as nodes. These polymers were formed through self-assembly of four different dicarboxylic acid ligands, namely adamantane-1,3-dicarboxylic acid (H2adc), glutaric acid (H2glu), 5-hydroxyisophthalic acid (H2hip) and fumaric acid (H2fum), in conjunction with the auxiliary ligand [1,4-bis(pyridin-4-ylmethyl)piperazine (bpmp). The corresponding formulae are [Cd3(adc)2(bpmp)Cl2(H2O)2]n (1), {[Cd2(glu)2(bpmp)2(H2O)2]·8H2O·2CH3OH}n (2), [Zn(hip)(bpmp)(H2O)]n (3) and [Cu(fum)(bpmp)(H2O)2]n (4). Single-crystal X-ray diffraction studies revealed that the Cd2+ centers in complex 1 all adopt a six-coordinate mode but two distinct {CdO2N2Cl2} and {CuO5Cl} units. The 3D network of complex 1 can be simplified to a binodal (4.6)-connected underlying net with the point symbol (3·42·5·62)4(32·62·72·88·10). Each Cd2+ cation in complex 2 adopts a seven-coordinate {CdO5N2} center, forming an asymmetric pentagonal bipyramidal coordination. Its stacking structure is formed by the interaction of hydrogen bonds between 2D supramolecular layers, with the adjacent layers exhibiting mirror symmetry. Each Zn2+ ion in complex 3 displays a {ZnO3N} four-coordinate unit. Its stacking structure is formed by one-dimensional [Zn(hip)(bpmp)(H2O)]n chains connected through hydrogen bonds. On the other hand, complex 4 features a Jahn-Teller distorted {CuO4N2} octahedral coordination. Subsequently, the thermal stability of these complexes was investigated. The solid-state fluorescence spectroscopy was employed to analyze complexes 1, 2 and 3. Additionally, a Hirshfeld surface analysis was performed on complex 3.

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来源期刊
Acta crystallographica Section B, Structural science, crystal engineering and materials
Acta crystallographica Section B, Structural science, crystal engineering and materials CHEMISTRY, MULTIDISCIPLINARYCRYSTALLOGRAPH-CRYSTALLOGRAPHY
CiteScore
3.60
自引率
5.30%
发文量
0
期刊介绍: Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials publishes scientific articles related to the structural science of compounds and materials in the widest sense. Knowledge of the arrangements of atoms, including their temporal variations and dependencies on temperature and pressure, is often the key to understanding physical and chemical phenomena and is crucial for the design of new materials and supramolecular devices. Acta Crystallographica B is the forum for the publication of such contributions. Scientific developments based on experimental studies as well as those based on theoretical approaches, including crystal-structure prediction, structure-property relations and the use of databases of crystal structures, are published.
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