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通过X射线晶体学、电子顺磁共振和动态核磁共振光谱研究的高自旋(中-四烷基卟啉铁(III))配合物

High-Spin (meso-Tetraalkylporphyrinato)iron(III) Complexes As Studied by X-ray Crystallography, EPR, and Dynamic NMR Spectroscopies.

作者信息

Ikeue Takahisa, Ohgo Yoshiki, Uchida Akira, Nakamura Mikio, Fujii Hiroshi, Yokoyama Masataka

机构信息

Department of Chemistry, Toho University School of Medicine, Ota-ku, Tokyo 143, Japan, Division of Biomolecular Science, Graduate School of Science, Toho University, Funabashi 274, Japan, Institute for Molecular Science, Okazaki 444, Japan, and Department of Chemistry, Faculty of Science, Chiba University, Chiba 260, Japan.

出版信息

Inorg Chem. 1999 Mar 22;38(6):1276-1281. doi: 10.1021/ic981184+.

Abstract

1H NMR spectra of a series of high-spin (meso-tetraalkylporphyrinato)iron(III) chlorides, [Fe(TRP)Cl] where R = Me, Et, Pr, or (i)Pr, have been measured at various temperatures in CD(2)Cl(2) solution. In the case of the Et, Pr, and (i)Pr complexes, either the methyl or the methylene signal split into two signals with equal integral intensities at low temperature. In contrast, the Me complex did not show any splitting even at -100 degrees C. The results have been ascribed to the hindered rotation of the meso-alkyl groups about C(meso)-C(alpha) bonds. The activation free energies for rotation have been determined as 8.0 (-72 degrees C), 8.5 (-60 degrees C), and 8.9 (-62 degrees C) kcal.mol(-1) for the Et, Pr, and (i)Pr complexes, respectively, at coalescence temperatures given in parentheses. The small activation free energy for rotation of the isopropyl groups observed in the present system is explained in terms of the nonplanarity of the porphyrin ring, which has been verified both by the X-ray crystallographic analysis and by the EPR spectrum taken in a frozen CH(2)Cl(2)-toluene solution. The success in observing the hindered rotation of less bulky primary alkyl groups such as ethyl and propyl groups at an easily accessible temperature range is attributed to the large difference in chemical shifts of the mutually exchanging protons, ca. 3500 Hz in the case of the Et complex, caused by the paramagnetism of the five-coordinated ferric porphyrin complexes.

摘要

一系列高自旋的(中-四烷基卟啉基)氯化铁(III),即[Fe(TRP)Cl](其中R = 甲基、乙基、丙基或异丙基)的1H NMR谱已在CD(2)Cl(2)溶液中的不同温度下测定。对于乙基、丙基和异丙基配合物,在低温下甲基或亚甲基信号会分裂成两个积分强度相等的信号。相比之下,甲基配合物即使在-100℃时也未显示任何分裂。该结果归因于中-烷基围绕C(meso)-C(α)键的受阻旋转。在括号中给出的合并温度下,乙基、丙基和异丙基配合物旋转的活化自由能分别确定为8.0(-72℃)、8.5(-60℃)和8.9(-62℃)kcal·mol(-1)。本体系中观察到的异丙基旋转的小活化自由能可根据卟啉环的非平面性来解释,这已通过X射线晶体学分析和在冷冻的CH(2)Cl(2)-甲苯溶液中获取的EPR谱得到证实。在易于达到的温度范围内成功观察到体积较小的伯烷基如乙基和丙基的受阻旋转,归因于相互交换的质子化学位移的巨大差异,对于乙基配合物而言约为3500 Hz,这是由五配位铁卟啉配合物的顺磁性引起的。

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