Matouzenko Galina S, Perrin Monique, Le Guennic Boris, Genre Caroline, Molnár Gábor, Bousseksou Azzedine, Borshch Serguei A
Laboratoire de Chimie (UMR CNRS and ENS-Lyon no 5182), Ecole Normale Supérieure de Lyon, 46, allée d'Italie, 69364, Lyon cedex 07, France.
Dalton Trans. 2007 Mar 7(9):934-42. doi: 10.1039/b615410g. Epub 2007 Jan 23.
The paper reports the synthesis and detailed characterization of two new Fe(II) compounds: Fe(pyim)(2)(bpen)(2).2C(2)H(5)OH (2) and Fe(pyim)(2)(bpe)(2).C(2)H(5)OH (3) (pyim = 2-(2-pyridyl)imidazole, bpen = 1,2-bis(4-pyridyl)ethane, and bpe = 1,2-bis(4-pyridyl)ethene). Both compounds and the earlier synthesized Fe(pyim)(2)(bpy)(2).2C(2)H(5)OH (1) (bpy = 4,4'-bipyridine) form a family of one-dimensional spin crossover coordination polymers. Variable-temperature magnetic susceptibility measurements and Mössbauer spectroscopy have revealed rather gradual spin transitions centered at 176 and 198 K for 2 and 3, respectively. The fitting of magnetic properties with the regular solution model leads to the enthalpy and entropy of spin transitions and the cooperativity parameter equal to DeltaH = 12.3 kJ mol(-1), DeltaS = 68.5 J mol(-1) K(-1), Gamma = 1.80 kJ mol(-1) for 2 and DeltaH = 13.6 kJ mol(-1), DeltaS = 68.1 J mol(-1) K(-1), Gamma = 2.05 kJ mol(-1) for 3. The crystal structures of 2 and 3, resolved by X-ray diffraction at 293 K, belong to the monoclinic space group C2/c (Z = 4). Both compounds display a one-dimensional infinite zigzag-chain structure. The polymer chains are stacked into two-dimensional sheets through intermolecular pi-interactions. The crystal packing of both compounds encloses two kinds of channels in which the counter ions and ethanol molecules are inserted. The DFT calculations of binuclear fragments extracted from three polymers resulted in the energy gaps between the LS and HS states being ordered as the observed transition temperatures. The influence of bridging ligands in the studied family of compounds was found in the modulation of the energy gap between the LS and HS states, leading to different transition temperatures.
该论文报道了两种新型Fe(II)化合物的合成及详细表征:Fe(pyim)(2)(bpen)(2).2C(2)H(5)OH (2)和Fe(pyim)(2)(bpe)(2).C(2)H(5)OH (3)(pyim = 2-(2-吡啶基)咪唑,bpen = 1,2-双(4-吡啶基)乙烷,bpe = 1,2-双(4-吡啶基)乙烯)。这两种化合物以及早期合成的Fe(pyim)(2)(bpy)(2).2C(2)H(5)OH (1)(bpy = 4,4'-联吡啶)形成了一个一维自旋交叉配位聚合物家族。变温磁化率测量和穆斯堡尔光谱表明,化合物2和3的自旋转变分别在176 K和198 K左右相当平缓。用正则溶液模型对磁性进行拟合,得到化合物2的自旋转变焓、熵和协同参数分别为ΔH = 12.3 kJ mol(-1),ΔS = 68.5 J mol(-1) K(-1),Γ = 1.80 kJ mol(-1);化合物3的分别为ΔH = 13.6 kJ mol(-1),ΔS = 68.1 J mol(-1) K(-1),Γ = 2.05 kJ mol(-1)。通过在293 K下的X射线衍射解析得到的化合物2和3的晶体结构属于单斜空间群C2/c(Z = 4)。两种化合物均呈现一维无限锯齿链结构。聚合物链通过分子间π相互作用堆积成二维片层。两种化合物的晶体堆积包含两种通道,抗衡离子和乙醇分子插入其中。从三种聚合物中提取的双核片段的密度泛函理论计算结果表明,低自旋(LS)态和高自旋(HS)态之间的能隙与观察到的转变温度顺序一致。在所研究的化合物家族中发现,桥连配体对低自旋态和高自旋态之间的能隙有调制作用,从而导致不同的转变温度。