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取代吡啶轴向键合镍卟啉引发的配位诱导自旋交叉(CISCO):sigma-给体与 pi-受体效应。

Coordination-induced spin crossover (CISCO) through axial bonding of substituted pyridines to nickel-porphyrins: sigma-donor versus pi-acceptor effects.

机构信息

Institut für Organische Chemie, Universität Kiel, Otto-Hahn-Platz 4, 24118 Kiel, Germany.

出版信息

Chemistry. 2010 Sep 3;16(33):10074-83. doi: 10.1002/chem.201000603.

DOI:10.1002/chem.201000603
PMID:20648489
Abstract

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 (OMeCO(2)Et>NO(2)). 4-Nitropyridine exhibits the largest binding enthalpy, which, however, is overcompensated by a large negative binding entropy. We attribute the large association enthalpy of nitropyridine with porphyrin to the back donation of electrons from the Ni d(xz) and d(yz) orbitals into the pi orbitals of pyridine, and the negative association entropy to a decrease in vibrational and internal rotation entropy of the more rigid porphyrin-pyridine complex. Back donation for the nitro- and cyanopyridine complexes is also confirmed by IR spectroscopy, and shows a shift of the N-O and C-N vibrations, respectively, to lower wave numbers. X-ray structures of 2:1 complexes with nitro-, cyano-, and dimethylaminopyridine provide further indication of a back donation. A further trend has been observed: the more basic the pyridine the larger is K(1S) relative to K(2). For nitropyridine K(2) is 17 times larger than K(1S) and in the case of methoxypyridine K(2) and K(1S) are almost equal.

摘要

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(OMeCO(2)Et>NO(2))。4-硝基吡啶表现出最大的结合焓,但被较大的负结合熵所补偿。我们将硝基吡啶与卟啉的大结合焓归因于 Ni d(xz)和 d(yz)轨道上的电子向吡啶的 pi 轨道的反向供体,而负的结合熵则归因于更刚性的卟啉-吡啶配合物的振动和内部旋转熵的降低。IR 光谱也证实了硝基和氰基吡啶配合物的反向供体,分别表现为 N-O 和 C-N 振动向较低波数的移动。与硝基、氰基和二甲氨基吡啶的 2:1 配合物的 X 射线结构进一步表明了反向供体的存在。还观察到了另一个趋势:吡啶的碱性越强,相对于 K(2),K(1S)就越大。对于硝基吡啶,K(2)是 K(1S)的 17 倍,而对于甲氧基吡啶,K(2)和 K(1S)几乎相等。

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