metal atom effect on the photophysical properties of mg(ii), zn(ii), cd(ii), and pd(ii) tetraphenylporphyrin complexes proposed as possible drugs in photodynamic therapy
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2017
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Abstract
The effects of Mg, Zn, Cd, and Pd dications on the photophysical properties of the tetraphenylporphyrin ligand have been explored, considering the corresponding complexes and by using the density functional theory and its time-dependent extension. Results show that absorption wavelengths do not change significantly when the metal ion changes contrary to what happens to the singlet–triplet energy gaps (ΔES−T) and the spin-orbit matrix elements ΨSnHsoΨTm. The most probable intersystem spin crossing (ISC) pathways for the population of the lowest triplet states have been explored. Our findings can contribute to rationalize the available experimental data and promote the potential therapeutic use of these compounds as photosensitizers in photodynamic therapy (PDT).
| Reference Key |
simone2017moleculesmetal
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| Authors | ;Bruna Clara De Simone;Gloria Mazzone;Nino Russo;Emilia Sicilia;Marirosa Toscano |
| Journal | Journal of ethnopharmacology |
| Year | 2017 |
| DOI |
10.3390/molecules22071093
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