A new copper(II) complex containing triclopyr: one-pot crystallization, structure, conformation and Hirshfeld surface analyses

IF 0.9 4区 材料科学 Q3 CRYSTALLOGRAPHY Zeitschrift Fur Kristallographie-Crystalline Materials Pub Date : 2023-02-13 DOI:10.1515/zkri-2022-0063
Jun-Xia Li, Shuai Ge, Yi-Jing Lu, Ke-Ying Quan, Li-Bing Wu, Ai-Rong Wang
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引用次数: 3

Abstract

Abstract A new copper(II) complex [Cu(3,5,6-tcpa)(2,2′-bipy)Cl] (1) has been obtained through the one-pot hydrothermal reaction of copper chloride dihydrate with triclopyr (systematic name 2-((3,5,6-trichloropyridin-2-yl)oxy)acetic acid, abbreviation 3,5,6-Htcpa) and 2,2′-bipyridine (2,2′-bipy) coligands. 1 has crystallized in triclinic crystal system, P 1 ‾ $\overline{1}$ space group. The central copper(II) ion displayed a distorted square–pyramidal geometry and was connected by one chlorido co-ligand (Clˉ), one 3,5,6-tcpa anionic chelator and one chelating 2,2’-bipy ligand to afford a mononuclear structure. 1 is further extended into a 3D network by the non-covalent interactions of H⋯Cl, H⋯O hydrogen bonds, aromatic π⋯π stacking together with Cl⋯Cl halogen bond interactions. The co-crystallization process, the crystal structure of 1 as well as the Hirshfeld surface analysis for 1 have been analyzed and described. In addition, the flexible conformation of phenoxy methylene group among 1, triclopyr acid and its previously reported co-crystallized compound also have been carefully compared and discussed.
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一种新的含三氯吡的铜(II)配合物:一锅结晶、结构、构象和Hirschfeld表面分析
摘要以氯化铜二水合物与三氯吡(系统名2-(3,5,6,3-三氯吡啶-2-基)氧基乙酸,简称3,5,6,6-Htcpa)和2,2′-联吡啶(2,2′-bipy)coligands进行一锅水热反应,得到了一种新的铜配合物[Cu(3,5,6-tcpa)(2,2’-bbipy)Cl](1)。1在三斜晶系中结晶,P1‾$\覆盖在{1}$空间群上。中心铜(II)离子显示出扭曲的正方形-金字塔几何结构,并由一个氯共配体(Clé)、一个3,5,6-tcpa阴离子螯合剂和一个螯合2,2'-bipy配体连接,以提供单核结构。1通过H·Cl、H·O氢键、芳香π·π与Cl·Cl卤键相互作用的非共价相互作用进一步扩展为三维网络。对1的共结晶过程、晶体结构以及1的Hirshfeld表面分析进行了分析和描述。此外,还对1,三氯吡酸与已有报道的共结晶化合物之间苯氧基亚甲基的柔性构象进行了仔细的比较和讨论。
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来源期刊
CiteScore
2.00
自引率
16.70%
发文量
55
期刊介绍: Zeitschrift für Kristallographie – Crystalline Materials was founded in 1877 by Paul von Groth and is today one of the world’s oldest scientific journals. It offers a place for researchers to present results of their theoretical experimental crystallographic studies. The journal presents significant results on structures and on properties of organic/inorganic substances with crystalline character, periodically ordered, modulated or quasicrystalline on static and dynamic phenomena applying the various methods of diffraction, spectroscopy and microscopy.
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