Solvatomorphism in a series of copper(II) complexes with the 5-phenylimidazole/perchlorate system as ligands.

IF 1.3 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Acta crystallographica Section B, Structural science, crystal engineering and materials Pub Date : 2024-08-01 Epub Date: 2024-07-30 DOI:10.1107/S2052520624005948
Edward Loukopoulos, Constantina Papatriantafyllopoulou, Eleni Moushi, Alexandros A Kitos, Anastasios J Tasiopoulos, Spyros P Perlepes, Vassilios Nastopoulos
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Abstract

In the course of an investigation of the supramolecular behaviour of copper(II) complexes with the 5-phenylimidazole/perchlorate ligand system (`blend') remarkable solvatomorphism has been observed. By employing a variety of crystallization solvents (polar protic, polar/non-polar aprotic), a series of 12 crystalline solvatomorphs with the general formula [Cu(ClO4)2(LH)4]·x(solvent) have been obtained [LH = 5-phenylimidazole, x(solvent) = 3.3(H2O) (1), 2(methanol) (2), 2(ethanol) (3), 2(1-propanol) (4), 2(2-propanol) (5), 2(2-butanol) (6), 2(dimethylformamide) (7), 2(acetone) (8), 2(tetrahydrofurane) (9), 2(1,4-dioxane) (10), 2(ethyl acetate) (11) and 1(diethyl ether) (12)]. The structures have been solved using single-crystal X-ray diffraction and the complexes were characterized by thermal analysis and infrared spectroscopy. The solvatomorphs are isostructural (triclinic, P1), with the exception of compound 9 (monoclinic, P21/n). The supramolecular structures and the role of the various solvents is discussed. All potential hydrogen-bond functionalities, both of the [Cu(ClO4)2(LH)4] units and of the solvents, are utilized in the course of the crystallization process. The supramolecular assembly in all structures is directed by strong recurring Nimidazole-H...Operchlorate motifs leading to robust scaffolds composed of the [Cu(ClO4)2(LH)4] host complexes. The solvents are located in channels and, with the exception of the disordered waters in 1 and the diethyl ether in 12, participate in hydrogen-bonding formation with the [Cu(ClO4)2(LH)4] complexes, serving as both hydrogen-bond acceptors and donors (for the polar protic solvents in 2-6), or solely as hydrogen-bond acceptors (for the polar/non-polar aprotic solvents in 7-11), linking the complexes and contributing to the stability of the crystalline compounds.

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以 5-苯基咪唑/高氯酸盐体系为配体的一系列铜(II)配合物的溶解变构。
在研究具有 5-苯基咪唑/高氯酸盐配体系统("混合物")的铜(II)配合物的超分子行为的过程中,观察到了显著的溶解形态。通过使用各种结晶溶剂(极性原生溶剂、极性/非极性非沸腾溶剂),得到了一系列 12 种结晶溶解共形物,通式为 [Cu(ClO4)2(LH)4]-x (溶剂)[LH = 5-苯基咪唑,x(溶剂) = 3.3(H2O) (1)、2(甲醇) (2)、2(乙醇) (3)、2(1-丙醇) (4)、2(2-丙醇) (5)、2(2-丁醇) (6)、2(二甲基甲酰胺) (7)、2(丙酮) (8)、2(四氢呋喃) (9)、2(1,4-二氧六环) (10)、2(乙酸乙酯) (11) 和 1(二乙醚) (12)]。利用单晶 X 射线衍射解决了这些化合物的结构问题,并通过热分析和红外光谱对这些复合物进行了表征。除了化合物 9(单斜,P21/n)外,其他化合物的溶解形态均为等结构(三斜晶系,P1)。对超分子结构和各种溶剂的作用进行了讨论。在结晶过程中,[Cu(ClO4)2(LH)4] 单元和溶剂的所有潜在氢键功能都被利用。所有结构中的超分子组装都是由强有力的重复性咪唑-H...厣氯酸盐基团引导的,从而形成了由[Cu(ClO4)2(LH)4]主复合物组成的坚固支架。溶剂位于通道中,除了 1 中的无序水和 12 中的二乙醚之外,它们都参与了[Cu(ClO4)2(LH)4]络合物的氢键形成,既是氢键受体,又是氢键供体(2-6 中的极性原生溶剂),或者仅仅是氢键受体(7-11 中的极性/非极性烷基溶剂),从而将络合物连接起来,提高了晶体化合物的稳定性。
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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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