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[Fe(Phen)(CN)₄]⁻:用于异金属体系设计的多功能结构单元。四苯基鏻[Fe(Phen)(CN)₄]·2H₂O和[[Fe(Phen)(CN)₄]₂M(H₂O)₂]·4H₂O的晶体结构与磁性[Phen = 1,10 - 菲咯啉;M = Mn(II)和Zn(II)] 。

Fe(Phen)(CN)4]-: a versatile building block for the design of heterometallic systems. Crystal structures and magnetic properties of PPh4[Fe(Phen)(CN)4]*2H2O and [[Fe(Phen)(CN)4]2M(H2O)2]*4H2O [Phen = 1,10-phenanthroline; M = Mn(II) and Zn(II).

作者信息

Lescouëzec R, Lloret F, Julve M, Vaissermann J, Verdaguer M, Llusar R, Uriel S

机构信息

Departament de Química Inorgànica, Facultat de Química de la Universitat de València, Dr. Moliner 50, 46100-Burjassot, València, Spain.

出版信息

Inorg Chem. 2001 Apr 23;40(9):2065-72. doi: 10.1021/ic001241a.

Abstract

The mononuclear PPh4[Fe(phen)(CN)4]*2H2O (1) complex and the cyanide-bridged bimetallic [[Fe(phen)(CN)4]2M(H2O)2]*4H2O compounds [M = Mn(II) (2) and Zn(II) (3); phen = 1,10-phenanthroline; PPh4 = tetraphenylphosphonium cation] have been synthesized and structurally and magnetically characterized. Complex 1 crystallizes in the monoclinic system, space group P2(1)/c, with a = 9.364(4) A, b = 27.472(5) A, c = 14.301(3) A, beta = 97.68(2) degrees, and Z = 4. Complexes 2 and 3 are isostructural and they crystallize in the monoclinic system, space group P2(1)/n, with a = 7.5292(4) A, b = 15.6000(10) A, c = 15.4081(9) A, beta = 93.552(2) degrees, and Z = 2 for 2 and a = 7.440(1) A, b = 15.569(3) A, c = 15.344(6) A, beta = 93.63(2) degrees, and Z = 2 for 3. The structure of complex 1 is made up of mononuclear [Fe(phen)(CN)4]- anions, tetraphenyphosphonium cations, and water molecules of crystallization. The iron(III) is hexacoordinate with two nitrogen atoms of a chelating phen (2.018(6) and 2.021(6) A for Fe-N) and four carbon atoms of four terminal cyanide groups (Fe-C bond lengths varying in the range 1.906(8)-1.95(1) A) building a distorted octahedron around the metal atom. The structure of complexes 2 and 3 consists of neutral double zigzag chains of formula [[Fe(phen)(CN)4]2M(H2O)2] and crystallization water molecules. The [Fe(phen)(CN)4]- entity of 1 is present in 2 and 3 acting as a bridging ligand toward M(H2O)2 units [M = Mn(II) (2) and Zn(II) (3)] through two cyanide groups in cis positions, the other two cyanide remaining terminal. Two water molecules in trans positions and four cyanide-nitrogen atoms from four [Fe(phen)(CN)4]- units build a distorted octahedral surrounding Mn(II) (2) and Zn(II) (3). The M-O bond lengths are 2.185(3) (2) and 2.105(3) A (3), whereas the M-N bond distances vary in the ranges 2.210(3)-2.258(3) A (2) and 2.112(3)-2.186(3) A (3). The structure of the [Fe(phen)(CN)4]- complex ligand in 2 and 3 is as in 1. The shorter intrachain Fe-M distances through bridging cyano are 5.245(5) and 5.208(5) A in 2 and 5.187(1) and 5.132(1) A in 3. The magnetic properties of 1-3 have been investigated in the temperature range 2.0-300 K. Complex 1 is a low-spin iron(III) complex with an appreciable orbital contribution. The magnetic properties of 3 correspond to the sum of two magnetically isolated spin triplets, the magnetic coupling between the low-spin iron(III) centers through the -CN-Zn-NC- bridging skeleton (iron-iron separation larger than 10.2 A) being negligible. More interestingly, 2 exhibits one-dimensional ferrimagnetic behavior due to the noncompensation of the local interacting spins (S(Mn) = 5/2 and S(Fe) = 1/2) which interact antiferromagnetically through bridging cyano groups. A comparison between the magnetic properties of the isostructural compounds 2 and 3 allow us to check the antiferromagnetic coupling in 2.

摘要

已合成单核四苯基鏻盐[Fe(phen)(CN)₄]·2H₂O (1)配合物以及氰基桥连的双金属[[Fe(phen)(CN)₄]₂M(H₂O)₂]·4H₂O化合物[M = Mn(II) (2)和Zn(II) (3);phen = 1,10 - 菲咯啉;PPh₄ = 四苯基鏻阳离子],并对其进行了结构和磁性表征。配合物1结晶于单斜晶系,空间群P2(1)/c,a = 9.364(4) Å,b = 27.472(5) Å,c = 14.301(3) Å,β = 97.68(2)°,Z = 4。配合物2和3是同构的,它们结晶于单斜晶系,空间群P2(1)/n,对于2,a = 7.5292(4) Å,b = 15.6000(10) Å,c = 15.4081(9) Å,β = 93.552(2)°,Z = 2;对于3,a = 7.440(1) Å,b = 15.569(3) Å,c = 15.344(6) Å,β = 93.63(2)°,Z = 2。配合物1的结构由单核[Fe(phen)(CN)₄]⁻阴离子、四苯基鏻阳离子和结晶水分子组成。铁(III)与一个螯合菲咯啉的两个氮原子(Fe - N键长为2.018(6)和2.021(6) Å)以及四个末端氰基的四个碳原子(Fe - C键长在1.906(8) - 1.95(1) Å范围内变化)配位,围绕金属原子形成一个扭曲的八面体。配合物2和3的结构由化学式为[[Fe(phen)(CN)₄]₂M(H₂O)₂]的中性双之字形链和结晶水分子组成。1中的[Fe(phen)(CN)₄]⁻实体在2和3中作为桥连配体,通过两个顺式位置的氰基与M(H₂O)₂单元[M = Mn(II) (2)和Zn(II) (3)]相连,另外两个氰基保持末端状态。两个反式位置的水分子和来自四个[Fe(phen)(CN)₄]⁻单元的四个氰基氮原子围绕Mn(II) (2)和Zn(II) (3)形成一个扭曲的八面体。M - O键长为2.185(3) (2)和2.105(3) Å (3),而M - N键距在2.210(3) - 2.258(3) Å (2)和2.112(3) - 2.186(3) Å (3)范围内变化。2和3中[Fe(phen)(CN)₄]⁻配合物配体的结构与1中相同。通过桥连氰基的链内较短Fe - M距离在2中为5.245(5)和5.208(5) Å,在3中为5.187(1)和5.132(1) Å。已在2.0 - 300 K温度范围内研究了1 - 3的磁性。配合物1是一个具有可观轨道贡献的低自旋铁(III)配合物。3的磁性对应于两个磁隔离的自旋三重态的总和,低自旋铁(III)中心之间通过 - CN - Zn - NC - 桥连骨架的磁耦合(铁 - 铁间距大于10.2 Å)可忽略不计。更有趣的是,2由于局部相互作用自旋(S(Mn) = 5/2和S(Fe) = 1/2)通过桥连氰基反铁磁相互作用且未得到补偿而表现出一维亚铁磁行为。对同构化合物2和3的磁性进行比较,使我们能够检验2中的反铁磁耦合。

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