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配体链长对氧化还原活性钴(II)EDOT配合物(EDOT = 3,4 - 亚乙基二氧噻吩)分子维度和磁弛豫调节的影响

Effect of Ligand Chain Length for Tuning of Molecular Dimensionality and Magnetic Relaxation in Redox Active Cobalt(II) EDOT Complexes (EDOT=3,4-Ethylenedioxythiophene).

作者信息

Ghosh Subrata, Kamilya Sujit, Mehta Sakshi, Herchel Radovan, Kiskin Mikhail, Veber Sergey, Fedin Matvey, Mondal Abhishake

机构信息

Solid State and Structural Chemistry Unit, Indian Institute of Science, Sir C. V. Raman Road, 560012, Bangalore, India.

Department of Inorganic Chemistry, Faculty of Science, Palacký University, CZ-771 46, Olomouc, Czech Republic.

出版信息

Chem Asian J. 2022 Aug 15;17(16):e202200404. doi: 10.1002/asia.202200404. Epub 2022 Jun 15.

DOI:10.1002/asia.202200404
PMID:35617522
Abstract

Four cobalt(II) complexes, [Co(L1) (NCX) (MeOH) ] (X=S (1), Se (2)) and {[Co(L2) (NCX) ]}n (X=S (3), Se (4)) (L1=2,5-dipyridyl-3,4,-ethylenedioxylthiophene and L2=2,5-diethynylpyridinyl-3,4-ethylenedioxythiophene), were synthesized by incorporating ethylenedioxythiophene based redox-active luminescence ligands. All these complexes have been well characterized using single-crystal X-ray diffraction analyses, spectroscopic and magnetic investigations. Magneto-structural studies showed that 1 and 2 adopt a mononuclear structure with CoN O octahedral coordination geometry while 3 and 4 have a 2D [4×4] rhombic grid coordination networks (CNs) where each cobalt(II) center is in a CoN octahedral coordination environment. Static magnetic measurements reveal that all four complexes displayed a high spin (HS) (S=3/2) state between 2 and 280 K which was further confirmed by X-band and Q-band EPR studies. Remarkably, along with the molecular dimensionality (0D and 2D) the modification in the axial coligands lead to a significant difference in the dynamic magnetic properties of the monomers and CNs at low temperatures. All complexes display slow magnetic relaxation behavior under an external dc magnetic field. For the complexes with NCS as coligand observed higher energy barrier for spin reversal in comparison to the complexes with NCSe as coligand, while mononuclear complex 1 exhibited a higher energy barrier than that of CN 3. Theoretical calculations at the DFT and CASSCF level of theory have been performed to get more insight into the electronic structure and magnetic properties of all four complexes.

摘要

通过引入基于乙二氧基噻吩的氧化还原活性发光配体,合成了四种钴(II)配合物,即[Co(L1)(NCX)(MeOH)](X = S(1),Se(2))和{[Co(L2)(NCX)]}n(X = S(3),Se(4))(L1 = 2,5 - 二吡啶基 - 3,4 - 乙二氧基噻吩,L2 = 2,5 - 二乙炔基吡啶基 - 3,4 - 乙二氧基噻吩)。所有这些配合物均通过单晶X射线衍射分析、光谱和磁性研究进行了充分表征。磁结构研究表明,1和2采用单核结构,具有CoN₆八面体配位几何构型,而3和4具有二维[4×4]菱形网格配位网络(CNs),其中每个钴(II)中心处于CoN₅八面体配位环境中。静态磁性测量表明,所有四种配合物在2至280 K之间均呈现高自旋(HS)(S = 3/2)状态,这通过X波段和Q波段EPR研究得到了进一步证实。值得注意的是,随着分子维度(0D和2D)的变化,轴向配体的修饰导致单体和CNs在低温下的动态磁性性质存在显著差异。所有配合物在外部直流磁场下均表现出缓慢的磁弛豫行为。与以NCSe作为配体的配合物相比,以NCS作为配体的配合物观察到更高的自旋反转能垒,而单核配合物1表现出比CN 3更高的能垒。已在DFT和CASSCF理论水平上进行了理论计算,以更深入地了解所有四种配合物的电子结构和磁性性质。

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