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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Combined Experimental and Theoretical Investigation of the Origin of Magnetic Anisotropy in Pentagonal Bipyramidal Isothiocyanato Co(II), Ni(II), and Fe(III) Complexes with Quaternary-Ammonium-Functionalized 2,6-Diacetylpyridine Bisacylhydrazone
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Combined Experimental and Theoretical Investigation of the Origin of Magnetic Anisotropy in Pentagonal Bipyramidal Isothiocyanato Co(II), Ni(II), and Fe(III) Complexes with Quaternary-Ammonium-Functionalized 2,6-Diacetylpyridine Bisacylhydrazone

机译:五氮铵官能化2,6-二乙酰吡啶二酰腙与季铵官能化二硫氰酸盐CO(II),Ni(II),Ni(II),Ni(II)和Fe(III)和Fe(III)复合物的磁各向异性起源的组合实验和理论研究

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摘要

Magnetic anisotropy in pentagonal bipyramidal complexes of Co(II) (1 and 2), Fe(III) (3 and 4), and Ni(II) (5) with a 2,2'-[2,6-pyridinediylbis(ethylidyne-1-hydrazinyl-2-ylidene)]bis[N,N,N-trimethyl-2-oxoethanaminium] equatorial ligand and isothiocyanato axial ligands has been investigated by magnetic susceptibility measurements, powder X-band electron paramagnetic resonance (EPR) spectroscopy, Mossbauer spectroscopy, ab initio, and ligand-field density functional theory (LFDFT) calculations. The studied complexes display three distinct types of magnetic anisotropy. Co(II) complexes (1 and 2) show an easy plane anisotropy with large and positive D values and negligible rhombicity. The Ni(II) complex (5) has uniaxial magnetic anisotropy with a negative D value. Fe(III) complexes (3 and 4) have small zero-field splitting (ZFS) parameters. Theoretical modeling is used to rationalize the magnetic anisotropy in these systems and to identify the most important excited states that are responsible for the zero-field splitting. These excitations are a consequence of the electronic structure of the central metal ion in ideal pentagonal bipyramidal coordination.
机译:在的Co(II)(1和2),铁(III)的五边形双锥络合物磁各向异性(3和4),和Ni(II)(5)用2,2' - [2,6-二pyridinediylbis(次乙基-1-肼基-2-亚基)]双[N,N,N-三甲基-2-氧代乙基]赤道配体和异硫氰酸酯轴向配体已经通过磁化率的测量研究,粉末X波段电子顺磁共振(EPR)光谱,穆斯堡尔谱,从头,和配体场密度泛函理论(LFDFT)计算。所研究的络合物显示三种不同类型的磁各向异性的。钴(II)配合物(1和2)显示出与大的正值d值和可忽略rhombicity容易平面各向异性。在Ni(II)络合物(5)具有带有负d值单轴磁各向异性。的Fe(III)络合物(3和4)具有小的零场分裂(ZFS)的参数。理论模型是用来合理化这些系统中的磁各向异性,并找出最重要的激发态,负责零场分裂。这些激励是在理想的五边形双锥协调中心金属离子的电子结构的结果。

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