Estudos das características fotofísicas da porfirina mesotetrasulfonatofenil (TPPS4): efeitos da protonação e interação com micelas de CTAB / Study of photophysical characteristics of meso-tetrakis sulphonatophenyl porphyrin (TPPS4): effects of protonation and interaction with CTAB micelles.

AUTOR(ES)
DATA DE PUBLICAÇÃO

2006

RESUMO

In this work, we study photophysical characteristics of meso-tetrakis sulphonatophenyl porphyrin (TPPS4) in protonated and nonprotonated states. We obtained the whole set of photophysical parameters of TPPS4 excited states in homogeneous aqueous solution and in the presence of micelles from cationic detergent cetyltrimethylammonium bromide (CTAB). The parameters obtained were: ground and excited singlet and triplet states cross sections; intersystemcrossing, internal conversion and radiative rate constants; singlet and triplet states life times and fluorescence and triplet state quantum yields. The techniques employed were linear optical ones: UV/Vis absorption and fluorescence spectroscopies, time-resolved fluorescence, flash-photolysis, and nonlinear Z-scan. We have confirmed, comparing obtained date with those from literature, that Z-scan in all its applied regimes is reliable and useful to study the excited state characteristics. It was observed that protonation affects all TPPS4 photophysical parameters: increases all rate constants of the excited energy dissipation thus reducing the excited state lifetimes, increases the fluorescence quantum yield and reduces the triplet state quantum yield. The singlet excited state absorption spectrum was obtained in the 460-800 nm region, with two Z-scan regimes: optical parametric amplification - OPA with 120-140 fs pulses and white light ultrashort pulses. It was observed that the protonated TPPS4 form possesses intense absorption of its singlet excited state in the 460-620 nm region. Basing on the obtained date analysis we can conclude that TPPS4 is promising for application as optical limiters in the visible spectral range and optical switching: in its nonprotonated form it can be effective in the range from femto- up to picoseconds while in its protonated form in the range from femto- up to nanoseconds. In the presence of CTAB micelles the TPPS4 parameters were close to those found for its nonprotonated state and completely different from the values for the protonated one. Besides, we observed an accumulative effect due to white light time dispersion (chirp), which was more pronounced for the protonated state, since its Q absorption band coincided with white light high potency region.

ASSUNTO(S)

photophysical properties z-scan estados excitados varredura-z. porfirinas óptica não linear excited states micelas porphyrin micelles nonlinear optical fotofísica

Documentos Relacionados