Carbonera Chiara, Sánchez Costa José, Money Victoria A, Elhaïk Jérôme, Howard Judith A K, Halcrow Malcolm A, Létard Jean-François
Institut de Chimie de la Matière Condensée de Bordeaux, UPR CNRS 9048-Université de Bordeaux 1, Groupe des Sciences Moléculaires, 87 Av. Doc. A. Schweitzer, F-33608, Pessac, France.
Dalton Trans. 2006 Jul 7(25):3058-66. doi: 10.1039/b601366j. Epub 2006 May 17.
The photomagnetic properties of the following iron(II) complexes have been investigated: [Fe(L1)2][BF4]2, [Fe(L2)2][BF4]2, [Fe(L2)2][ClO4]2, [Fe(L3)2][BF4]2, [Fe(L3)2][ClO4]2 and [Fe(L4)2][ClO4]2 (L1 = 2,6-di{pyrazol-1-yl}pyridine; L2 = 2,6-di{pyrazol-1-yl}pyrazine; L3 = 2,6-di{pyrazol-1-yl}-4-{hydroxymethyl}pyridine; and L4 = 2,6-di{4-methylpyrazol-1-yl}pyridine). Compounds display a complete thermal spin transition centred between 200-300 K, and undergo the light-induced excited spin state trapping (LIESST) effect at low temperatures. The T(LIESST) relaxation temperature of the photoinduced high-spin state for each compound has been determined. The presence of sigmoidal kinetics in the HS --> LS relaxation process, and the observation of LITH hysteresis loops under constant irradiation, demonstrate the cooperative nature of the spin transitions undergone by these materials. All the compounds in this study follow a previously proposed linear relation between T(LIESST) and their thermal spin-transition temperatures T(1/2): T(LIESST) = T(0)- 0.3T(1/2). T(0) for these compounds is identical to that found previously for another family of iron(II) complexes of a related tridentate ligand, the first time such a comparison has been made. Crystallographic characterisation of the high- and low-spin forms, the light-induced high-spin state, and the low-spin complex [Fe(L4)2][BF4]2, are described.
对以下铁(II)配合物的光磁性质进行了研究:[Fe(L1)2][BF4]2、[Fe(L2)2][BF4]2、[Fe(L2)2][ClO4]2、[Fe(L3)2][BF4]2、[Fe(L3)2][ClO4]2 和 [Fe(L4)2][ClO4]2(L1 = 2,6 - 二{吡唑 - 1 - 基}吡啶;L2 = 2,6 - 二{吡唑 - 1 - 基}吡嗪;L3 = 2,6 - 二{吡唑 - 1 - 基}-4 - {羟甲基}吡啶;L4 = 2,6 - 二{4 - 甲基吡唑 - 1 - 基}吡啶)。这些化合物在200 - 300 K之间呈现出完整的热自旋转变,并在低温下经历光诱导激发自旋态捕获(LIESST)效应。已确定每种化合物光诱导高自旋态的T(LIESST)弛豫温度。HS→LS弛豫过程中存在S形动力学,以及在恒定光照下观察到LITH滞后环,证明了这些材料所经历的自旋转变具有协同性质。本研究中的所有化合物都遵循先前提出的T(LIESST)与其热自旋转变温度T(1/2)之间的线性关系:T(LIESST) = T(0) - 0.3T(1/2)。这些化合物的T(0)与先前在另一系列相关三齿配体的铁(II)配合物中发现的相同,这是首次进行此类比较。描述了高自旋和低自旋形式、光诱导高自旋态以及低自旋配合物[Fe(L4)2][BF4]2的晶体学表征。