首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis, X-ray powder structure, and magnetic properties of the new, weak ferromagnet iron(II) phenylphosphonate
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Synthesis, X-ray powder structure, and magnetic properties of the new, weak ferromagnet iron(II) phenylphosphonate

机译:新型弱铁磁体苯基膦酸铁(II)的合成,X射线粉末结构和磁性

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A new molecule-based weak ferromagnet of formula Fe[C6H5PO3]. H2O was synthesized It was characterized by thermogravimetric analysis and UV-visible and infrared spectroscopy, and the magnetic properties were studied using a superconducting quantum interference device magnetometer. The crystal structure of the compound was determined "ab initio" from X-ray powder diffraction data and refined by the Rietveld method. The crystals of Fe[C6H5PO3]. H2O are orthorhombic, space group Pmn2(1), with a = 5.668(8) Angstrom, b = 14.453(2) Angstrom, c = 4.893(7) Angstrom, and Z = 2. The title compound is isostructural with the previously reported lamellar M[C6H5PO3]. H2O, M = Mn(II), Zn(II), and Cd(II). The inorganic layers are made of Fe(II) ions octahedrally coordinated by dye phosphonate oxygen atoms and one from oxygen of the water molecule. These layers are then separated by bilayers of the phenyl groups, and van der Waals contacts are established between them. The refinement has shown that the phenyl rings are disordered in the lattice. The oxidation state of the metal ion is +2, and the electronic configuration is d(6) (S = 2) high-spin, as determined from de magnetic susceptibility measurements from 150 K to room temperature. Below 100 K, the magnetic moment of Fe[C6H5PO3]. H2O rises rapidly to a maximum at T-N = 21.5 K, and then it decreases again. The peak at T-N is associated with the 3D antiferromagnetic long-range ordering. Below the critical temperature, the title compound behaves as a "weak" ferromagnet, which represents the third type of magnetic materials characterized by having a finite zero-field magnetization, ferromagnets and ferrimagnets being the other two types. The large coercive field (i.e., 6400 G) observed in the hysteresis loop at T = 10 K is rare in molecule-based materials; it can be ascribed to a pronounced spin-orbit coupling for the T-5(2g) ground state of the Fe(II) ion in the octahedral environment. [References: 33]
机译:分子式为Fe [C6H5PO3]的新型基于分子的弱铁磁体。通过热重分析,紫外可见光谱和红外光谱对水进行了表征,并使用超导量子干涉仪磁强计研究了其磁性能。从X射线粉末衍射数据“从头开始”确定化合物的晶体结构,并通过Rietveld方法精制。 Fe [C6H5PO3]的晶体。 H2O是正交晶体,空间群Pmn2(1),a = 5.668(8)埃,b = 14.453(2)埃,c = 4.893(7)埃,Z =2。标题化合物与先前报道的结构相同层状M [C6H5PO3]。 H 2 O,M = Mn(II),Zn(II)和Cd(II)。无机层由八面体的Fe(II)离子组成,这些离子与染料的膦酸酯氧原子和一个水分子中的氧原子配位。这些层然后被苯基的双层隔开,并且在它们之间建立了范德华接触。精炼表明,苯环在晶格中是无序的。金属离子的氧化态为+2,电子结构为d(6)(S = 2)高自旋,这是根据从150 K到室温的磁化率测量确定的。低于100 K时,Fe [C6H5PO3]的磁矩。 H2O在T-N = 21.5 K时迅速上升到最大值,然后再次下降。 T-N处的峰值与3D反铁磁远距离排序相关。在临界温度以下,标题化合物的行为类似于“弱”铁磁体,代表了具有有限零场磁化强度的第三种磁性材料,另外两种类型的是铁磁体和亚铁磁体。在基于分子的材料中,T = 10 K时在磁滞回线中观察到的大矫顽场(即6400 G)是罕见的;可以将其归因于八面体环境中Fe(II)离子的T-5(2g)基态的自旋轨道耦合。 [参考:33]

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