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基于量子化学的五配位金属卟啉[M(TPP)Cl]振动光谱分析

Quantum chemistry-based analysis of the vibrational spectra of five-coordinate metalloporphyrins [M(TPP)Cl].

作者信息

Paulat Florian, Praneeth V K K, Näther Christian, Lehnert Nicolai

机构信息

Institut für Anorganische Chemie, Christian-Albrechts-Universität Kiel, Olshausenstrasse 40, D-24098 Kiel, Germany.

出版信息

Inorg Chem. 2006 Apr 3;45(7):2835-56. doi: 10.1021/ic0510866.

Abstract

Vibrational properties of the five-coordinate porphyrin complexes [M(TPP)(Cl)] (M = Fe, Mn, Co) are analyzed in detail. For [Fe(TPP)(Cl)] (1), a complete vibrational data set is obtained, including nonresonance (NR) Raman, and resonance Raman (RR) spectra at multiple excitation wavelengths as well as IR spectra. These data are completely assigned using density functional (DFT) calculations and polarization measurements. Compared to earlier works, a number of bands are reassigned in this one. These include the important, structure-sensitive band at 390 cm(-1), which is reassigned here to the totally symmetric nu(breathing)(Fe-N) vibration for complex 1. This is in agreement with the assignments for [Ni(TPP)]. In general, the assignments are on the basis of an idealized [M(TPP)]+ core with D(4h) symmetry. In this Work, small deviations from D(4h) are observed in the vibrational spectra and analyzed in detail. On the basis of the assignments of the vibrational spectra of 1, [Mn(TPP)(Cl)] (2), and diamagnetic [Co(TPP)(Cl)] (3), eight metal-sensitive bands are identified. Two of them correspond to the nu(M-N) stretching modes with B(1g) and Eu symmetries and are assigned here for the first time. The shifts of the metal sensitive modes are interpreted on the basis of differences in the porphyrin C-C, C-N, and M-N distances. Besides the porphyrin core vibrations, the M-Cl stretching modes also show strong metal sensitivity. The strength of the M-Cl bond in 1-3 is further investigated. From normal coordinate analysis (NCA), force constants of 1.796 (Fe), 0.932 (Mn), and 1.717 (Co) mdyn/A are obtained for 1-3, respectively. The weakness of the Mn-Cl bond is attributed to the fact that it only corresponds to half a sigma bond. Finally, RR spectroscopy is used to gain detailed insight into the nature of the electronically excited states. This relates to the mechanism of resonance enhancement and the actual nature of the enhanced vibrations. It is of importance that anomalous polarized bands (A(2g) vibrations), which are diagnostic for vibronic mixing, are especially useful for this purpose.

摘要

详细分析了五配位卟啉配合物[M(TPP)(Cl)](M = Fe、Mn、Co)的振动性质。对于[Fe(TPP)(Cl)](1),获得了完整的振动数据集,包括非共振(NR)拉曼光谱、多个激发波长下的共振拉曼(RR)光谱以及红外光谱。使用密度泛函(DFT)计算和偏振测量对这些数据进行了完全归属。与早期工作相比,本工作中重新归属了许多谱带。其中包括位于390 cm⁻¹处重要的、对结构敏感的谱带,在此处重新归属为配合物1的全对称ν(呼吸)(Fe-N)振动。这与[Ni(TPP)]的归属一致。一般来说,归属是基于具有D(4h)对称性的理想化[M(TPP)]⁺核心。在本工作中,在振动光谱中观察到了与D(4h)的小偏差并进行了详细分析。基于1、[Mn(TPP)(Cl)](2)和抗磁性[Co(TPP)(Cl)](3)的振动光谱归属,确定了八条对金属敏感的谱带。其中两条对应具有B(1g)和Eu对称性的ν(M-N)伸缩模式,此处为首次归属。基于卟啉C-C、C-N和M-N距离的差异对金属敏感模式的位移进行了解释。除了卟啉核心振动外,M-Cl伸缩模式也表现出很强的金属敏感性。进一步研究了1 - 3中M-Cl键的强度。通过简正坐标分析(NCA),分别得到1 - 3的力常数为1.796(Fe)、0.932(Mn)和1.717(Co)mdyn/Å。Mn-Cl键的较弱归因于它只相当于半个σ键。最后,使用RR光谱深入了解电子激发态的性质。这涉及共振增强机制以及增强振动的实际性质。重要的是,对振动-电子混合具有诊断作用的异常偏振谱带(A(2g)振动)在此目的上特别有用。

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