Department of Chemistry, Nankai University, Weijin Road 94, Tianjin 300071, People's Republic of China.
Spectrochim Acta A Mol Biomol Spectrosc. 2010 Feb;75(2):880-90. doi: 10.1016/j.saa.2009.12.027. Epub 2009 Dec 16.
The influences of meso-phenyl substitution on the geometric structure and vibrational spectra have been studied by DFT calculation (B3LYP/6-31G(d)) and experiment on a series of zinc porphyrins (ZnTPP: zinc 5,10,15,20-tetraphenylporphyrin; ZnTrPP: zinc 5,10,15-triphenylporphryin; ZnDPP: zinc 5,15-dipenylporphyirn; ZnMPP: zinc 5-monophenylporphyrin; ZnP: zinc porphine). Calculation indicates that meso-phenyl substitution gives rise to slight out-of-plane distortion but significant in-plane distortion, especially for the configuration around C(m) atom, to zinc porphyrin. The assignment of experimental vibrational spectra was proposed mainly on the basis of calculation. Different shifting tendency upon meso-phenyl substitution is observed for different structure-sensitive bands, such as the shifting of nu(2), nu(3), nu(6), and nu(8) modes toward higher frequencies and nu(4) and nu(28) modes toward lower frequencies, upon meso-phenyl substitution. This is attributed primarily to in-plane nuclear reorganization effect (IPNR), though the contribution from out-of-plane distortion cannot be excluded completely. Analysis on vibrational structure reveals that asymmetric meso-phenyl substitution, especially the 5,15-diphenyl substitution of ZnDPP, brings about asymmetric vibrational displacement, or even splitting of vibrational structure to normal modes involving mainly the motion of meso-C(m). This is ascribed to the reduction of symmetry of porphyrin skeleton caused by asymmetric meso-phenyl substitution.
中取代基对几何结构和振动光谱的影响通过 DFT 计算(B3LYP/6-31G(d))和一系列锌卟啉(ZnTPP:锌 5,10,15,20-四苯基卟啉;ZnTrPP:锌 5,10,15-三苯基卟啉;ZnDPP:锌 5,15-二苯基卟啉;ZnMPP:锌 5-单苯基卟啉;ZnP:锌卟啉)的实验进行了研究。计算表明,中取代基导致卟啉平面外变形略有,但平面内变形显著,特别是对 C(m)原子周围的构象。实验振动光谱的归属主要是基于计算提出的。不同结构敏感带在中取代基上的位移趋势不同,例如,nu(2)、nu(3)、nu(6)和 nu(8)模式向高频移动,nu(4)和 nu(28)模式向低频移动,这主要归因于平面内核重排效应(IPNR),尽管不能完全排除平面外变形的贡献。振动结构分析表明,不对称中取代基,特别是 ZnDPP 的 5,15-二苯基取代,导致不对称振动位移,甚至涉及主要为中-C(m)运动的正则模式的振动结构分裂。这归因于不对称中取代基引起的卟啉骨架对称性降低。