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新型[Cu(II)-O-Cd(II)]双开口笼状簇桥联四(μ-甲氧基)的合成:XRD/HSA 相互作用、光谱和氧化性质。

Synthesis of Novel Tetra(µ-Methoxo) Bridged with [Cu(II)-O-Cd(II)] Double-Open-Cubane Cluster: XRD/HSA-Interactions, Spectral and Oxidizing Properties.

机构信息

Laboratory of Applied and Environmental Chemistry (LCAE), Mohammed First University, 60000 Oujda, Morocco.

Department of Chemistry, King Fahd University of Petroleum and Minerals, P.O. Box 5048, Dhahran 31261, Saudi Arabia.

出版信息

Int J Mol Sci. 2020 Nov 20;21(22):8787. doi: 10.3390/ijms21228787.

Abstract

A new double-open-cubane core Cd(II)-O-Cu(II) bimetallic ligand mixed cluster of type [ClCuCd(NNO)(NN)(NO)].CHCN was made available in EtOH/CHCN solution. The 1-hydroxymethyl-3,5-dimethylpyrazole (NNOH) and 3,5-dimethylpyrazole (NNH) act as N,O-polydentate anion ligands in coordinating the Cu(II) and Cd(II) centers. The structure of the cluster in the solid state was proved by XRD study and confirmed in the liquid state by UV-vis analysis. The XRD result supported the construction of two octahedral and one square pyramid geometries types around the four Cu(II) centers and only octahedral geometry around Cd(II) two centers. Interestingly, NNOH ligand acts as a tetra-µ-oxo and tri-µ-oxo ligand; meanwhile, the N-N in NNH acts as classical bidentate anion/neutral ligands. The interactions in the lattice were detected experimentally by the XRD-packing result and computed via Hirschfeld surface analysis (HSA). The UV-vis., FT-IR and Energy Dispersive X-ray (EDX), supported the desired double-open cubane cluster composition. The oxidation potential of the desired cluster was evaluated using a 3,5-DTB-catechol 3,5-DTB-quinone as a catecholase model reaction.

摘要

在乙醇/CHCN 溶液中制备了一种新的双开口立方核 Cd(II)-O-Cu(II) 双金属配体混合簇 [ClCuCd(NNO)(NN)(NO)].CHCN。1-羟甲基-3,5-二甲基吡唑 (NNOH) 和 3,5-二甲基吡唑 (NNH) 作为 N,O-多齿阴离子配体与 Cu(II) 和 Cd(II) 中心配位。通过 XRD 研究证明了该簇在固态下的结构,并通过 UV-vis 分析在液态下得到证实。XRD 结果支持在四个 Cu(II)中心周围构建两种八面体和一种四方锥几何类型,而在 Cd(II) 两个中心周围仅构建八面体几何类型。有趣的是,NNOH 配体充当四µ-氧和三µ-氧配体;同时,NNH 中的 N-N 充当经典的双齿阴离子/中性配体。通过 XRD 堆积结果实验检测到晶格中的相互作用,并通过 Hirshfeld 表面分析 (HSA) 进行计算。UV-vis、FT-IR 和能量色散 X 射线 (EDX) 支持所需的双开口立方烷簇组成。使用 3,5-DTB-儿茶酚 3,5-DTB-醌作为儿茶酚酶模型反应评估所需簇的氧化电位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a708/7699772/af836a8fa821/ijms-21-08787-sch001.jpg

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