TIME-RESOLVED RESONANCE RAMAN-SPECTROSCOPY OF TRIPLET-STATE METALATED AND FREE-BASE TETRAARYLPORPHYRINS

被引:20
作者
BELL, SEJ [1 ]
AAKEROY, CB [1 ]
ALOBAIDI, AHR [1 ]
HEGARTY, JNM [1 ]
MCGARVEY, JJ [1 ]
LEFLEY, CR [1 ]
MOORE, JN [1 ]
HESTER, RE [1 ]
机构
[1] UNIV YORK,DEPT CHEM,YORK YO1 5DD,N YORKSHIRE,ENGLAND
来源
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS | 1995年 / 91卷 / 03期
关键词
D O I
10.1039/ft9959100411
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Resonance Raman spectra of the T-1 excited states of Zn and free-base tetra-4-sulfonatophenylporphyrin (TPPS) have been recorded at room temperature in aqueous solution using two-colour time-resolved methods. The spectra of both sulfonated molecules are very similar to their tetraphenylporphyrin (TPP) analogues, which have been recorded in THF solution using the same pump-probe conditions, but they have higher signal-to-noise ratios because interference from strong solvent bands is reduced. Although two different T-1 spectra of Zn(TPP) have been reported these spectra differ slightly from each other and from the spectrum reported here, which has band positions very close (+/-6 cm(-1)) to those of Zn(TPPS). The high S/N ratios obtainable for the water-soluble porphyrins have allowed reliable polarization data to be recorded for their S-0 and T-1 states. This data set allows a realistic comparison of the changes in bonding associated with excitation of both free-base and Zn tetraarylporphyrins to the T-1 state. Semi-empirical (AM1) calculations of the bond-length changes associated with excitation of free-base TPP and the simpler model tetra-4-fluorophenylporphyrin (TFP) to their T-1 states follow qualitative predictions based on the orbital coefficients of the HOMO and LUMO involved in the transition. These structural changes accord satisfactorily with the observed changes in frequency on excitation of the vibrational modes of free-base TPP and TPPS. The calculated bond-length changes are strikingly close to those previously calculated for Zn(TFP), where Jahn-Teller effects are expected. The primary effect of the Jahn-Teller distortion in the molecular orbital calculations is to lift the degeneracy of the e(g) LUMO pair of the Zn complexes. Once this degeneracy is lifted the calculated geometry changes for both free-base and Zn complexes converge because they arise from a HOMO to LUMO excitation between two orbitals which have similar coefficients in both. The observation that the directions of the shifts of most of the vibrational modes in the T-1 states of the free-base and Zn porphyrins are the same, supports this general conclusion. The only band which displays significantly different behaviour between the metallated and free-base systems is nu(11) which is a B-1g mode. This suggests that the Jahn-Teller distortion that rifts degeneracy of the LUMO in the T-1 states of the Zn complexes occurs along a B-1g coordinate.
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页码:411 / 418
页数:8
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