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P-N键水解辅助形成具有强易轴各向异性和场致慢磁弛豫的准三角反棱柱形Co(II)配合物:磁结构与理论研究

P-N Bond Hydrolysis Assisted Formation of a pseudo-Trigonal Antiprismatic Co(II) Complex with Strong Easy-Axis Anisotropy and Field-Induced Slow Magnetic Relaxation: A Magneto-Structural and Theoretical Study.

作者信息

Kalita Pankaj, Kumar Pawan, Mar Quesada-Moreno María, Colacio Enrique, Chandrasekhar Vadapalli

机构信息

Department of Chemistry, Nowgong Girls' College, Nagaon, Assam, -782002, India.

Tata Institute of Fundamental Research Hyderabad, Gopanpally, Hyderabad, 500107, India.

出版信息

Chem Asian J. 2025 May 15;20(10):e202500062. doi: 10.1002/asia.202500062. Epub 2025 Apr 4.

DOI:10.1002/asia.202500062
PMID:40065736
Abstract

The reaction of hydrated cobalt(II) perchlorate salt with the rigid tripodal ligand, tris(3,5-dimethylpyrazolyl) phosphine oxide, (O)P(3,5-DMPz), results in selective in situ hydrolysis of a P-N bond affording a neutral mononuclear Co(II) complex, [Co{(O)P(O)(3,5-DMP)}] (1). The X-ray crystal structure of 1 shows that it is formed by the coordination of two monoanionic NO-tripodal (O)P(O)(3,5-DMPz) ligands, leading to a CoNO coordination sphere with an elongated pseudo-trigonal antiprismatic geometry. The analysis of the dc magnetic data revealed that this compound shows a strong easy-axis magnetic anisotropy with D=-45.3 cm and |E|= 10.2 cm. Ab initio theoretical studies further supported these values and therefore confirmed the axiality in the ground state, with the magnetic anisotropy axis lying along the P-Co(II)-P direction. Dynamic magnetic measurements confirmed slow relaxation of magnetization under an applied dc field of 0.15 T. The magnetic relaxation does not take place through an Orbach process but through a combination of direct and Raman processes and it is much faster than that observed for other trigonal antiprismatic Co(II) complexes. This is probably due to the comparatively smaller magnetic anisotropy of 1, as a result of the larger distortion of its geometry generated by the non-symmetrical (O)P(O)(3,5-DMP) ligand.

摘要

水合高氯酸钴(II)盐与刚性三脚架配体三(3,5-二甲基吡唑基)氧化膦((O)P(3,5-DMPz))反应,导致P-N键发生选择性原位水解,生成中性单核钴(II)配合物[Co{(O)P(O)(3,5-DMP)}](1)。1的X射线晶体结构表明,它是由两个单阴离子NO-三脚架(O)P(O)(3,5-DMPz)配体配位形成的,形成了一个具有拉长的伪三角反棱柱几何形状的CoNO配位球。对直流磁性数据的分析表明,该化合物表现出很强的易轴磁各向异性,D = -45.3 cm,|E| = 10.2 cm。从头算理论研究进一步支持了这些值,因此证实了基态的轴向性,磁各向异性轴沿P-Co(II)-P方向。动态磁性测量证实,在0.15 T的外加直流磁场下,磁化强度缓慢弛豫。磁弛豫不是通过奥巴赫过程发生的,而是通过直接过程和拉曼过程的组合发生的,并且比其他三角反棱柱钴(II)配合物观察到的要快得多。这可能是由于1的磁各向异性相对较小,这是由不对称的(O)P(O)(3,5-DMP)配体产生的较大几何畸变导致的。

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