Zhang Ying-Hui, Chen Dong-Ming, He Tianjing, Liu Fan-Chen
Department of Chemical Physics, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.
Spectrochim Acta A Mol Biomol Spectrosc. 2003 Jan 1;59(1):87-101. doi: 10.1016/s1386-1425(02)00124-5.
Raman and IR spectra of the free base p-sulfonatophenyl and phenyl meso-substituted porphyrins [5,10,15,20-tetrakis(4-sulfonatophenyl)porphyrin (TPPS4); 5,10,15-tris(4-sulfonatophenyl)-20-phenyl-porphyrin (TPPS3); 5,10-bis(4-sulfonatophenyl)-15,20-diphenylporphyrin (TPPS2A); 5,15-bis(4-sulfonatophenyl)-10,20-diphenylporphyrin (TPPS2O); and 5-(4-sulfonatophenyl)-10, 15,20-trisphenylporphyrin (TPPS1)] and their N-diprotonated derivatives (porphyrin diacids) were studied. The Raman spectra of the deuterated analogues of these porphyrins, in which the central hydrogen atoms were substituted with deuterium, were also measured. The observed vibrational bands were assigned on the basis of the deuteration shifts and compared with the structural analogues of these compounds. In IR spectra of the free-base porphyrins, the p-sulfonation of phenyl groups results in evident alteration for the phenyl modes and the porphyrin skeleton modes that are strongly coupled with phenyl vibrations. While the p-sulfonation of phenyl groups causes only slight changes for the high-frequency Raman bands (> 850 cm(-1)), dramatic shifts and band splitting were observed in the low-frequency region (< 500 cm(-1)) of Raman spectra. The observed differences of low-frequency Raman spectra were attributed to the alteration of the structure of the porphyrin ring, especially the CalphaCmCalpha bond-angles, by different meso-sulfonatophenyl substitutions. In addition, different packing style of TPPSn molecules in the aggregates is also responsible for the alteration of the vibrational spectra of the aggregated TPPSn.
研究了对磺基苯基和苯基中位取代卟啉(5,10,15,20-四(4-磺基苯基)卟啉(TPPS4);5,10,15-三(4-磺基苯基)-20-苯基卟啉(TPPS3);5,10-双(4-磺基苯基)-15,20-二苯基卟啉(TPPS2A);5,15-双(4-磺基苯基)-10,20-二苯基卟啉(TPPS2O);以及5-(4-磺基苯基)-10,15,20-三苯基卟啉(TPPS1))及其N-二质子化衍生物(卟啉二酸)的拉曼光谱和红外光谱。还测量了这些卟啉的氘代类似物的拉曼光谱,其中中心氢原子被氘取代。根据氘代位移对观察到的振动带进行了归属,并与这些化合物的结构类似物进行了比较。在游离碱卟啉的红外光谱中,苯基的对磺化导致苯基模式和与苯基振动强烈耦合的卟啉骨架模式发生明显变化。虽然苯基的对磺化仅使高频拉曼带(>850 cm⁻¹)发生轻微变化,但在拉曼光谱的低频区域(<500 cm⁻¹)观察到了显著的位移和谱带分裂。低频拉曼光谱中观察到的差异归因于不同的中位磺基苯基取代导致的卟啉环结构的改变,特别是Cα-Cm-Cα键角的改变。此外,TPPSn分子在聚集体中的不同堆积方式也导致了聚集态TPPSn振动光谱的改变。