Dupouy Gaelle, Marchivie Mathieu, Triki Smail, Sala-Pala Jean, Salaün Jean-Yves, Gómez-García Carlos J, Guionneau Philippe
UMR CNRS 6521, Université de Bretagne Occidentale, BP 809, 29285 Brest Cedex, France.
Inorg Chem. 2008 Oct 6;47(19):8921-31. doi: 10.1021/ic800955r. Epub 2008 Aug 8.
New iron(II) complexes of formulas [Fe(abpt) 2(tcm) 2] ( 1), [Fe(abpt) 2(tcnome) 2] ( 2), and [Fe(abpt) 2(tcnoet) 2] ( 3) (abpt = 4-amino-3,5-bis(pyridin-2-yl)-1,2,4-triazole, tcm (-) = [C(CN) 3] (-) = tricyanomethanide anion; tcnome (-) = [(NC) 2CC(OCH 3)C(CN) 2] (-) = 1,1,3,3-tetracyano-2-methoxypropenide anion; tcnoet (-) = [(NC) 2CC(OC 2H 5)C(CN) 2] (-) = 1,1,3,3-tetracyano-2-ethoxypropenide anion) have been synthesized and characterized by infrared spectroscopy, magnetic properties and by variable-temperature single-crystal X-ray diffraction. The crystal structure determinations of 1 and 2 reveal in both cases centrosymmetric discrete iron(II) monomeric structures in which two abpt chelating ligands stand in the equatorial plane and two terminal polynitrile ligands complete the distorted octahedral environment in trans positions. For 3, the crystallographic studies revealed two polymorphs, 3- A and 3- B, exhibiting similar discrete molecular structures to those found for 1 and 2 but with different molecular arrangements. In agreement with the variable-temperature single-crystal X-ray diffraction, the magnetic susceptibility measurements, performed in the temperature range 2-400 K, showed a spin-crossover phenomenon above room temperature for complexes 1, 3- A, and 3- B with a T 1/2 of 336, 377, and 383 K, respectively, while complex 2 remains in the high-spin ground state ( S = 2) in the whole temperature range. To understand further the magnetic behaviors of 1, 3-A, and 3-B, single-crystal X-ray diffraction measurements were performed at high temperatures. The crystal structures of both polymorphs could not be obtained above 400 K because the crystals decomposed. However, single-crystal X-ray data have been collected for compound 1, which reaches the full high-spin state at lower temperatures. Its crystal structure, solved at 400 K, showed a strong modification of the iron coordination sphere (average Fe-N = 2.157(3) A vs 1.986(3) A at 293 K). In agreement with the magnetic properties. Such structural behavior is a signature of the spin-state transition from low-spin (LS) to high-spin (HS). On the basis of the intermolecular pi stacking observed for the series described in this paper and for related complexes involving similar discrete structures, we have shown that complexes displaying frontal pi stacking present spin transition such as 1, 3-A, and 3-B and those involving sideways pi stacking such as complex 2 remain in the HS state.
已合成了化学式为[Fe(abpt)₂(tcm)₂] (1)、[Fe(abpt)₂(tcnome)₂] (2) 和 [Fe(abpt)₂(tcnoet)₂] (3) 的新型铁(II)配合物(abpt = 4-氨基-3,5-双(吡啶-2-基)-1,2,4-三唑,tcm⁻ = [C(CN)₃]⁻ = 三氰基甲烷阴离子;tcnome⁻ = [(NC)₂CC(OCH₃)C(CN)₂]⁻ = 1,1,3,3-四氰基-2-甲氧基丙烯阴离子;tcnoet⁻ = [(NC)₂CC(OC₂H₅)C(CN)₂]⁻ = 1,1,3,3-四氰基-2-乙氧基丙烯阴离子),并通过红外光谱、磁性以及变温单晶X射线衍射对其进行了表征。1和2的晶体结构测定表明,在这两种情况下均为中心对称的离散铁(II)单体结构,其中两个abpt螯合配体位于赤道平面,两个末端多腈配体在反位完成扭曲的八面体环境。对于3,晶体学研究揭示了两种多晶型物3 - A和3 - B,它们表现出与1和2相似的离散分子结构,但分子排列不同。与变温单晶X射线衍射结果一致,在2 - 400 K温度范围内进行的磁化率测量表明,配合物1、3 - A和3 - B在室温以上表现出自旋交叉现象,其T₁/₂分别为336、377和383 K,而配合物2在整个温度范围内保持高自旋基态(S = 2)。为了进一步了解1、3 - A和3 - B的磁行为,在高温下进行了单晶X射线衍射测量。由于晶体分解,在400 K以上无法获得两种多晶型物的晶体结构。然而,已收集到化合物1在较低温度下达到完全高自旋态时的单晶X射线数据。其在400 K解析的晶体结构显示铁配位球有显著变化(平均Fe - N = 2.157(3) Å,而在293 K时为1.986(3) Å)。与磁性性质一致。这种结构行为是自旋态从低自旋(LS)到高自旋(HS)转变的特征。基于本文所述系列以及涉及类似离散结构的相关配合物中观察到的分子间π堆积情况,我们表明,呈现正面π堆积(如1、3 - A和3 - B)的配合物存在自旋转变,而涉及侧面π堆积(如配合物2)的配合物则保持在HS态。