Repozytorium
Wyszukaj
Kolekcje
Inne
Origin of ultrafast radiationless deactivation dynamics of free-base subpyriporphyrins.
Autorzy
Rok wydania
2011
Czasopismo
Journal of Physical Chemistry Letters
Numer woluminu
2
Strony
477-481
DOI
10.1021/jz1017366
Kolekcja
Język
Angielski
Typ publikacji
Artykuł
In this study, we have investigated the photophysical properties of free-base subpyriporphyrins by changing the peripheral substituents from phenyl to nitrophenyl groups. While the electron withdrawing nature of nitrophenyl substituent gives rise to a noticeable perturbation in the absorption spectrum arising from the charge-transfer (CT) transition, both molecules show similar excited state dynamics at ambient temperature. This feature is mainly due to the fact that the CT transitions caused by the nitrophenyl substituent in free-base subpyriporphyrin are located higher in energy than the lowest excited S1 state. Moreover, through the temperature dependence and protonation experiments, we have demonstrated that the NH-tautomerization is a key factor in determining the excited state dynamics of free-base subpyriporphyrins. In this sense, we can suggest that the control of substituent and solvents in free-base subporphyrinoids could be a new strategy for the fine-tuning of photophysical properties. Furthermore, to the best of our knowledge, this is the first study to illustrate the photophysical properties of free-base subporphyrinoids.
Słowa kluczowe
subporphyrinoids, tautomerization, excited state dynamics, temperature dependence, protonation
Adres publiczny
https://doi.org/10.1021/jz1017366
Strona internetowa wydawcy
Podobne publikacje
Synthesis, photophysics and excited state structure of 1,8-di(p-tolyl)-1,3,5,7-octatetrayne.
Deperasińska Irena, Szemik-Hojniak Anna, Osowska Karolina, Rode M. F., Szczepanik A., Wiśniewski Łukasz, Lis Tadeusz, Szafert Sławomir
Editorial: Hot topic: excited state processes in biomolecules
Fang Chong, Rega Nadia, Biczysko Małgorzata
Comprehensive physicochemical studies of a new hybrid material: 2-amino-4-methyl-3-nitropyridinium hydrogen oxalate.
Bryndal Iwona, Kucharska Edyta, Wandas Maria, Lorenc Jadwiga, Hermanowicz Krzysztof, Mączka Mirosław, Lis Tadeusz, Marchewka Mariusz, Hanuza Jerzy