Institut für Organische Chemie, Universität Kiel, Otto-Hahn-Platz 4, 24118 Kiel, Germany.
Chemistry. 2010 Sep 3;16(33):10074-83. doi: 10.1002/chem.201000603.
Nickel-porphyrins, with their rigid quadratic planar coordination framework, provide an excellent model to study the coordination-induced spin crossover (CISCO) effect because bonding of one or two axial ligands to the metal center leads to a spin transition from S=0 to S=1. Herein, both equilibrium constants K(1S) and K(2), and for the first time also the corresponding thermodynamic parameters DeltaH(1S), DeltaH(2), DeltaS(1S), and DeltaS(2), are determined for the reaction of a nickel-porphyrin (Ni-tetrakis(pentafluorophenyl)porphyrin) with different 4-substituted pyridines by temperature-dependent NMR spectroscopy. The association constants K(1S) and K(2) are correlated with the basicity of the 4-substituted pyridines (R: OMe>H>CO(2)Et>NO(2)) whereas the DeltaH(1S) values exhibit a completely different order (OMe
镍卟啉具有刚性的平面四方配位框架,是研究配位诱导自旋交叉(CISCO)效应的理想模型,因为一个或两个轴向配体与金属中心的键合导致自旋从 S=0 到 S=1 的转变。在此,通过温度依赖的 NMR 光谱首次确定了镍卟啉(Ni-四(五氟苯基)卟啉)与不同 4-取代吡啶反应的平衡常数 K(1S)和 K(2),以及相应的热力学参数 DeltaH(1S)、DeltaH(2)、DeltaS(1S)和 DeltaS(2)。结合常数 K(1S)和 K(2)与 4-取代吡啶的碱性(R:OMe>H>CO(2)Et>NO(2))相关,而 DeltaH(1S)值则呈现完全不同的顺序(OMe